TUTORIALS |
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9:30 |
A01 | McCammon D., Enss C. | Physical principles of low temperature detectors: ultimate performance limits and current detector capabilities | A01_prep | ||
11:20 |
A02 | Wolfe J.P. | Phonon physics applied to cryogenic detectors | |||
GENERAL DETECTORS PHYSICS |
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Oral |
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12:00 |
B01 | Brandt D., Fraser G.W., Binns C. | Thin film superconducting detectors and the quantum vacuum | B01_prep | ||
12:15 |
B02 | Reveret V., Rodriguez L., Le Pennec J., Agnese P. | PACS bolometer arrays for ground-based telescopes | B02_prep | ||
12:30 |
B03 | Leman S., Brink P., Cabrera B., Tomada A., Young B. | Phonon-mediated distributed transition-edge-sensor X-ray detector with deep trenches | B03_abs | B03_pres | B03_prep |
Poster |
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|
12:45 |
B04 | Belier B., Benoit A., Berge L., Camus P., Collin S., Dumoulin L., Durand T., Fernandez B., Hoffmann C., Marceau N., Marnieros S., Monfardini A. | NbSi bolometers: a versatile approach for large arrays | B04_abs | ||
| B05 | Damayanthi R.M.T., Fukuda D., Takahashi H., Ohkubo M., Ohno M., Leman S. | Design of an optical absorption cavity for titanium transition edge sensor | B05_abs | B05_pres | B05_prep | |
| B06 | Kozorezov A., Wigmore J., Martin D., Verhoeve P., Peacock A. | Phonon noise in thin metal films in advanced energy down-convertion stage | B06_abs |
|
B06_prep | |
| B07 | Machida M., Koyama T., Kato M., Ishida T. | Direct numerical simulations for non-equilibrium superconducting dynamics at the transition edge | B07_prep | |||
| B08 | Bagliani D., Gatti F., Parodi L., Ribeiro Gomes M., Ferrari L. | Electron-phonon thermal conductance measurements of thin iridium films | ||||
| B09 | Kühn T., Maasilta I.J. | Effect of thin ballistic membranes on transition-edge sensor performance | B09_abs | B09_pres | B09_prep | |
| B10 | O'Neil G.C., Schmidt D.R., Miller N.A., Ullom J.N., Williams A., Ruggiero S.T., Arnold G.B. | Density of states measurements of AlMn alloys with tunable superconducting gaps | B10_abs | B10_pres | B10_prep | |
| B11 | Rajteri M., Taralli E., Portesi C., Monticone E. | Superconducting detector reflectivity reduction in the near infrared region | B11_abs | B11_pres | ||
| B12 | Rostem K., Glowacka D., Goldie D.J., Withington S. | A technique for measuring the conductance of silicon-nitride membranes using Johnson noise thermometry | B12_abs | B12_prep | ||
TES DETECTORS: PHYSICS, CHARACTERIZATION AND PERFORMANCE |
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Invited |
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14:30 |
C01 | Cabrera B. | Introduction to TES Physics | C01_prep | ||
Oral |
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15:00 |
C02 | Hoevers H., Bruijn M., Dirks B., Gottardi L., De Korte P., van der Kuur J., Popescu M., Ridder M., Takei Y., Takken D. | Systematic study of TiAu-based TES microcalorimeters with different geometries | C02_abs | C02_pres | C02_prep |
15:15 |
C03 | Fukuda D., Damayanthi R.M.T., Yoshizawa A., Tsuchida H., Takahashi H., Ohkubo M. | High speed photon number resolving detector with titanium transition edge sensors | C03_abs | C03_pres | C03_prep |
15:30 |
C04 | Gottardi L., Takei Y., van deer Kuur J., de Korte P.A.J., Hoevers H.F.C., Bruijn M.P., Ridder M.L., Takken D. | Characterization of a TES-based X-ray microcalorimeter in the energy range from 200 to 1800 eV using an Adiabatic Demagnetization Refrigerator | C04_prep | ||
15:45 |
C05 | Kenyon M., Day P.K., Bradford C.M., Bock J.J., Leduc H.G. | Electrical properties of background-limited membrane-isolated transition-edge superconducting bolometers for space-based far-IR/submillimeter direct-detection spectroscopy | C05_abs | C05_pres | C05_prep |
16:00 |
C06 | Kinnunen K., Nuottajärvi A., Leppäniemi J., Maasilta I. | Minimizing excess noise in Au/Ti transition edge sensors | C06_abs | C06_pres | C06_prep |
Poster |
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16:15 |
C07 | Lita A., Miller A., Nam S.W. | Energy collection efficiency measurements for tungsten transition-edge sensors in the near-infrared | C07_abs | C07_pres | C07_prep |
| C08 | Ishisaki Y., Kurabayashi H., Hoshino A., Ohashi T., Yoshino T., Hagihara T., Mitsuda K., Tanaka K. | Effect of on-chip magnetic shielding for TES microcalorimeters | C08_abs | C08_pres | C08_prep | |
| C09 | Bonetti J., Day P., Kenyon M., Leduc H., Turner A., Kuo C.-L., Bock J. | Electrical and thermal characterization of membrane-isolated, antenna-coupled, transition-edge sensing bolometers | C09_abs | C09_pres | C09_prep | |
| C10 | Kinnunen K., Maasilta I. | Unusual excess noise in a transition-edge sensor with a dot-coupled absorber | C10_abs | C10_pres | C10_prep | |
| C11 | Mori F., Minamikawa H., Damayanthi R.M.T., Leman S., Zen N., Ohno M., Takahashi H., Tokoyawa H., Tanida H., Uruga T. | Synchrotron beam test of a position-sensitive small-pixel Ir-TES array | C11_abs | C11_pres | C11_prep | |
| C12 | Minamikawa Y., Sato H., Mori F., Damayanthi R.M.T., Takahashi H., Ohno M. | Simulation of transient response of Ir-TES for position-sensitive TES with waveform domain multiplexing | C12_prep | |||
| C13 | Takei Y., Gottardi L., Hoevers H.F.C., de Korte P.A.J., van der Kuur J., Ridder M.L., Bruijn M.P. | Characterization of a high-performance Ti/Au TES microcalorimeter with a central Cu absorber | C13_abs | C13_prep | ||
| C14 | Zuo F., Zhang H., Galeazzi M. | Excess voltage noises at the superconducting transition of Tin films | ||||
| C15 | Bogorin D.F., Galeazzi M. | Characterization of iridium thin films for TES microcalorimeters | C15_abs | C15_prep | ||
| C16 | Barrentine E., Timbie P., Stevenson T.R., Ali S., Chervenak J.A., Wollack E.J., Moseley S.H., Allen C.A., Hseih W.-T., Miller T.M., Benford D.J., Brown A.-D. | Sensitivity measurements of a transition-edge hot-electron microbolometer for millimeter-wave astrophysical observations | C16_abs | C16_pres | C16_prep | |
| C17 | Lindeman M.A., Barger K.A., Brandl D.E., Crowder S.G., Rocks L., McCammon D. | Accurate thermal conductance and impedance measurements of transition edge sensors | C17_abs | C17_pres | C17_prep | |
| C18 | Yoshino T., Mukai K., Ezoe Y., Hagihara T., Kurabayashi H., Ishisaki Y., Mitsuda K., Yamasaki N.Y., Fujimoto R. | Modelling the position dependence of pulse height in a TES microcalorimeter with an Au absorber | C18_abs | C18_pres | C18_prep | |
| C19 | Lindeman M.A., Barger K.A., Brandl D.E., Crowder S.G., Rocks L., McCammon D., Hoevers H.F.C. | The superconducting transition in 4-D: temperature, current, resistance and heat capacity | C19_abs | C19_pres | C19_prep | |
| C20 | Smith S.J., Bandler S.R., Brown A.-D., Chervenak J.A., Finkbeiner F.M., Iyomoto N., Kelley R.L., Kilbourne C.A., Porter F.S., Sadleir J.E. | Characterizing the superconducting-to-normal transition in Mo/Au transition-edge sensor bilayers | C20_abs | C20_pres | C20_prep | |
| C21 | Doriese W.B., Beall J.A., Cho H.M., Duncan W.D., Ferreira L., Hilton G.C., Horansky R.D., Irwin K.D., Mates J.A.B., Reintsema C.D., Schmidt D.R., Ullom J.N., Vale L.R., Xu Y. | A 128-pixel multiplexed array of TES x-ray microcalorimeters | ||||
| C22 | Wilson T. | The fabrication and characterization of granular aluminium/palladium bilayer microbolometers with sub-nanosecond response | C22_abs | C22_prep | ||
| Tuesday 24th | ||||||
TES
DETECTORS: DESIGN AND FABRICATION |
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Oral |
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8:30 |
D01 | Ferrari L., Gatti F., Ribeiro Gomes M., Bagliani D., Valle R., Dussoni S., Piro L., Colasanti L., Macculi C., Barbera M., Perinati E. | Study of Sn/Bi microcalorimeters for astrophysics | D01_abs | D01_prep | |
8:45 |
D02 | Bailey C., CDMS collaboration | Detector development for the next phases of the cryogenic dark matter search | D02_abs | D02_pres | D02_prep |
9:00 |
D03 | Taralli E., Portesi C., Introzzi R., Rajteri M., Monticone E. | Development of transition-edge sensors as UV-visible single photon detectors | |||
Poster |
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9:15 |
D04 | Roth S., Ciemniak C., Coppi C., von Feilitzsch F., Gütlein A., Isaila C., Lanfranchi J.-C., Pfister S., Potzel W., Westphal W. | Properties of tungsten thin films produced with the RF-sputtering technique | D04_abs | D04_pres | D04_prep |
| D05 | Kilbourne C., Bandler S., Brown A., Chervenak J., Figueroa-Feliciano E., Finkbeiner F., Iyomoto N., Kelley R., Porter S., Smith S. | Various optimizations of TES arrays for X-ray astrophysics | D05_abs | D05_pres | D05_prep | |
| D06 | Ohno M., Mori F., Minamikawa Y., Damayanthi T., Leman S., Takahashi H., Sato H., Toyokawa H. | Development of high count rate TES microcalorimeters | D06_abs | D06_pres | D06_prep | |
| D07 | Bagliani D., Gatti F., Bovino F.A., Ribeiro Gomes M., Parodi L., Ferrari L. | Transition edge sensors for single photon detection | D07_prep | |||
| D08 | Gonzalez-Arrabal R., Camon A.H., Fabrega L., Fernandez I., Bacon X., Sese J., Briones F. | Mo/Au bilayers deposited at room temperature for transition edge sensors applications | D08_prep | |||
| D09 | Cantor R., Hall J.A., Blumenfeld P. | Multi-pixel TES detector array for x-ray microanalysis | ||||
| D10 | Chang C.L., Carlstrom J.E., Meyer S.S., Novosad V., Yefremenko V.G., Crawford T., Downes T., McMahon J., Miknaitis K., Vieira J.D. | Design and fabrication of absorber coupled TES microbolometers on continuous silicon-nitride windows | D10_abs | D10_pres | D10_prep | |
| D11 | Deiker S., Bay T.J., Cabrera B., Rausch A., Stern R., Tomada A., Young B. | AlMn transition edge sensor X-ray detectors | ||||
| D12 | Glowacka D., Audley M., Crane M., Goldie D., Tsaneva V., Withington S. | Processing development for high yield fabrication of microstrip-coupled superconducting transition edge sensors | D12_abs | D12_pres | D12_prep | |
| D13 | Finkbeiner F., Bandler S., Brekosky R., Brown A.-D., Figueroa-Feliciano E., Iyomoto N., Kelley R., Porter S., Saab T., Sadlier J., Smith S., Chervenak J. | Materials development for auxiliary components for large compact Mo/Au TES arrays | D13_prep | |||
| D14 | Portesi C., Taralli E., Rocci R., Rajteri M., Monticone E. | Fabrication of a Ti/Au TES for optical photon counting | D14_abs | D14_pres | D14_prep | |
| D15 | Pfister S., von Feilitzsch F., Hauff D., Isaila C., Lanfranchi J.-C., Pantic E., Petricca F., Potzel W., Pröbst F., Roth S., Seidel W., Westphal W. | Reproducible production of superconducting tungsten thin films as detector components for the CRESST experiment | ||||
| D16 | Allen C., Benford D., Miller T., Staguhn J., Wollack E., Moseley H. | Design and fabrication highlights enabling a 2 mm, 128 element bolometer array for GISMO | D16_prep | |||
| D17 | Lorenza Ferrari, Flavio Gatti, Daniele Pergolesi, Maria Ribeiro Gomes, Daniela Bagliani, Riccardo Valle, Simeone Dussoni, Luigi Piro, Luca Colasanti, Claudio Macculi, Marco Barbera and Emanuele Perinati |
Study of microcalorimeters for astrophysics applications | D17_prep | |||
STJ DETECTORS |
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Invited |
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9:35 |
E01 | Friedrich S. | Superconducting tunnel junction photon and particle detectors: theory and applications | E01_prep | ||
Oral |
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10:05 |
E02 | Andrianov V., Gorkov V., Filippenko L., Koshelets V. | Bias voltage dependence of quasiparticle recombination in STJ detectors with killed electrode | E02_prep | ||
10:20 |
E03 | Kuzmin L. | A superconducting cold-electron bolometer (SCEB) with SIS'tunnel junction and josephson junction for cosmology instruments | E03_abs | E03_pres | E03_prep |
11:05 |
E04 | Hijmering R., Verhoeve P., Martin D., Jerjen I., Kozorezov A., Venn R. | Direct determination of position sensitivity in the optical with Ta/Al DROIDs | E04_prep | ||
11:20 |
E05 | Matsuo H., Mori Y., Murakoshi Y., Ariyoshi S., Ezawa H., Hibi Y., Kobayashi J., Nagata H., Nakahashi M., Otani C. | Realization of submillimeter-wave imaging array with superconducting direct detectors | |||
11:35 |
E06 | Wigmore K., Kozorezov A., Stokes M., Verhoeve P. | Complete analysis of STJ detector performance via absorption of phonon pulses | E06_abs | E06_pres | E06_prep |
11:50 |
E07 | Ukibe M., Chen Y., Shimizugawa Y., Yohei K., Kurokawa A., Ohkubo M. | Anomaly in fabrication processes for large-scale array detectors of superconducting tunnel junctions | E07_abs | E07_pres | |
Poster |
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12:05 |
E08 | Jerjen I., Hijmering R.A., Verhoeve P., Martin D.E.E., Peacock A., Kozorezov A.G., Venn R. | Determination of the photon impact position within a DROID | E08_prep | ||
| E09 | Andrianov V., Gorkov V. | Quasiparticle edge losses and self-recombination in double STJs strip X-rays detectors | E09_abs | E09_pres | ||
| E10 | Samedov V. | Position resolution in DROIDs | E10_abs | E10_prep | ||
METALLIC MAGNETIC
CALORIMETERS |
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Oral |
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12:15 |
F01 | Burck A., Kempf S., Rotzinger H., Rodrigues M., Gastaldo L., Fleischmann A., Enss C. | Microfabricated magnetic calorimeter with meander shaped pickup coil | F01_abs | F01_pres | F01_prep |
12:30 |
F02 | Gastaldo L., Linck M., Schäfer S., Rotzinger H., Burck A., Kempf S., Porst J.-P., Fleischmann A., Enss C., Seidel G.M. | Metallic magnetic calorimeters (MMC) for high resolution X-ray spectroscopy | F02_abs | F02_pres | |
| Poster | ||||||
|
12:45 |
F03 | Lee S.J., Kim J., Kim N., Kim S.C., Kim S.K., Kim Y.H., Kwon Y.D., Lee K.B., Lee M.K., Lee Y.H., Woo B.C. | Measurement of 241Am alpha energy spectrum using a metallic magnetic calorimeter | F03_abs | F03_pres | F03_prep |
| F04 | Sato K., Tsuchiya A., Oshima T., Yamasaki N.Y., Morooka T. | Development of low temperature SQUID gradiometer arrays for magnetic microcalorimeter | F04_prep | |||
| F05 | Kim Y.H., Lee S.J., Kwon Y.D., Lee K.B., Lee M.K., Lee Y.H., Cantor R. | Development of metallic magnetic calorimeters using miniature SQUID susceptometers | F05_pres | |||
| F06 | Rotzinger H., Adams J.S., Bandler S.R., Beyer J., Eguchi H., Figueroa-Feliciano E., Hseih W., Seidel G.M., Stevenson T. | Performance of micro-fabricated metallic magnetic calorimeters arrays for X-ray spectroscopy | F06_prep | |||
| F07 | Schaefer S., Kempf S., Burck A., Rotzinger H., Gastaldo L., Fleischmann A., Enss C. | Microfabrication of meander type MMC detectors | F07_abs | F07_pres | ||
| F08 | Hsieh W.-T., Adams J., Bandler S., Beyer J., Denis K., Eguchi H., Rotzinger H., Schneider G., Seidel G., Stevenson T., Travers D. | Fabrication of metallic magnetic calorimeter X-ray detector arrays | F08_abs | F08_pres | F08_prep | |
| F09 | Zink B.L., Sultan R., Irwin K.D., Hilton G.C., Ullom J.N., Vale L.R. | Design, fabrication, and multiplexing of magnetic calorimeter X-ray detectors with high-efficiency SQUID readout | F09_abs | F09_pres | F09_prep | |
| F10 | Fleischmann A., Gastaldo L., Linck M., Schäfer S., Rotzinger H., Burck A., Kempf S., Porst J.-P., Enss C., Seidel G.M. | Numerical optimization of the energy resolution of MMCs with meander shaped pickup coil | ||||
| F11 | STP Boyd, R Cantor, V Kotsubo, P Blumenfeld, and JA Hall | Characterization of a miniature thin-film SQUID susceptometer for metallic magnetic microcalorimetry | F11_prep | |||
THERMISTOR DETECTORS |
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Oral |
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15:30 |
G01 | Kelley R., Allen C., Kilbourne C., McCammon D., Porter S., Szymkowiak A. | Ion-implanted Si X-ray calorimeters: present and future | G01_prep | ||
Poster |
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15:45 |
G02 | Aliane A., De Moro F., Agnèse P., de La Broise X., Gasse A., Navick X.-F., Pigot C., Sauvageot J.-L. | X-ray detector array design, based on silicon thermistors, for astronomy on board of the new generation space missions | G02_prep | ||
| G03 | Chianetta G., Arnone C., Barbera M., Beeman J., Collura A., Lullo G., Perinati E., Silver E. | A fully planar approach to the construction of X-ray microcalorimeters with doped germanium sensors | G03_abs | G03_pres | G03_prep | |
| G04 | Durand T., Benoit A., Camus P., Guillaudin O., Hoffmann C., Monfardini A. | Fabrication and optical characterization of antenna bolometer arrays | G04_abs | G04_pres |
|
|
STUDIES ON DETECTOR
ABSORBERS |
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Oral |
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| 16:00 | H01 | Isaila G., Boslau O., Ciemniak C., Coppi C., von Feilitzsch F., Gütlein A., Kemmer J., Lanfranchi J.-C., Pahlke A., Pfister S., Potzel W., Roch S., Westphal W., Wiest F. | Application of the Neganov-Luke effect for scintillation light detection | H01_abs | H01_pres | H01_prep |
16:15 |
H02 | Bandler S., Brekosky R., Brown A., Chervenak, Figueroa-Feliciano E., Finkbeiner F., Iyomoto N., Kelley R., Kilbourne C., Porter F., Sadleir J., Smith S. | Performance of TES X-ray microcalorimeters with a novel absorber design | H02_abs | H02_pres | H02_prep |
Poster |
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16:30 |
H03 | Iyomoto N., Bandler S., Brekosky R., Brown A., Chervenak J., Figueroa-Feliciano E., Finkbeiner F., Kelley R., Kilbourne C., Lindeman M., Porter F., Saab T., Sadleir J., Smith S. | Modelling of TES X-ray microcalorimeters with a novel absorber design | H03_prep | ||
| H04 | Bandler S., Brekosky R., Brown A.-D., Chervenak J., Figueroa-Feliciano E., Finkbeiner F., Iyomoto N., Kelley R., Kilbourne C., Porter F., Smith S., Saab T., Sadleir J. | Absorber materials for transition-edge sensor X-ray microcalorimeters | H04_abs | H04_pres | H04_prep | |
| H05 | Moseley S., Allen C., Costen N., Kelley R., Kilbourne C., Miller T. | Automated hybridization of X-ray absorber elements - A path to large format microcalorimeter arrays | H05_abs | H05_prep | ||
| H06 | E. Figueroa-Feliciano · T. Saab · P. M. Rivera-Ortiz · S. R. Bandler · N. Iyomoto· R. L. Kelley · C. A. Kilbourne · F. S. Porter · S. J. Smith | Minimizing position dependent pulse shape variation in the micro-X detectors | H06_prep | |||
| H07 | Oshima T., Yamakawa Y., Kurabayashi H., Hoshino A., Ishisaki Y., Ohashi T., Mitsuda K., Tanaka K. | A high energy resolution gamma-ray TES calorimeter with fast response time | H07_prep | |||
| H08 | Porst J.-P., Höhn C., Haug D., Weldle R., Seidel G.M., Gastaldo L., Fleischmann A., Enss C. | Properties of superconducting rhenium as an absorber for magnetic calorimeters | H08_abs | H08_pres | H08_prep | |
| H09 | Kim Y.-H., Lee Y.H., Kwon Y.D., Lee K.B., Lee M.K., Lee S.J. | Fabrication of overhanging structure of Gold Absorber for X-ray microcalorimeters | ||||
| H10 | Perinati E., Barbera M., Silver E., Beeman J. | Study of the thermalization properties of X-ray microcalorimeters using gold absorbers with drops of superconductors on top | ||||
| H11 | Sundqvist K., on behalf of the CDMS collaboration | Charge transport and phonon emission in detectors of the cryogenic dark matter search | H11_prep | |||
INSTRUMENTAL DESIGN |
||||||
Invited |
||||||
16:45 |
J01 | Yvon D. | My bolometer is running a fever. Is it serious Doctor ? Or why very low noise performance requires careful global design of the apparatus | J01_prep | ||
Oral |
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17:15 |
J02 | Allen C., Benford D., Miller T., Staguhn J., Wollack E., Moseley H. | Technology developments toward large format long wavelength bolometer arrays | |||
17:30 |
J03 | O'Brient R., Arnold K., Engargiola G., Holzapfel W., Lee A., Meng X.F., Myers M., Quealy E., Richards P., Spieler H., Tran H. | Multichroic antenna-coupled bolometer detectors for CMB polarization measurements | J03_abs | J03_pres | J03_prep |
Poster |
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17:45 |
J04 | Shirokoff E., Benson B.A., Chang C., Cho H.M., Crawford T., Dobbs M., Holzapfel W.L., Lee A.T., Lueker M., Mehl J., Plagge T., Spieler H., Vierra J. | The south pole telescope SZ survey receiver | |||
| J05 | Kuo C.-L., Bock J., Brevik J., Chattopadthyay, Day P., Golwala S., Kenyon M., Lange A., Leduc H., Wang G. | Antenna-coupled TES bolometers for CMB polarization | ||||
| J06 | Myers M.J., Ade P., Arnold K., Engargiola G., Holzapfel W.L., Lee A.T., O'Brient R., Richards P.L., Smith A., Spieler H., Tran H.T. | Antenna-coupled TES bolometer arrays for the POLARBEAR experiment | J06_prep | |||
| J07 | Stevenson T.R., Benford D.J., Bennett C.L., Cao N.T., Chuss D.T., Denis K.L., Hsieh W.-T., Kogut A.J., Moseley H., Panek J.S., Scheider G.H., Travers D.E., U-Yen K., Voellmer G.M., Wollack E.J. | Cosmic microwave background polariation detector with high efficiency, broad bandwidth, and highly symmetric coupling to transition edge sensor bolometers | J07_abs | J07_pres | J07_prep | |
| J08 | Day P., Leduc H., Dowell C., Lee R., Zmuidzinas J. | Distributed antenna-coupled TES for FIR detector arrays | J08_abs | J08_pres | J08_prep | |
| J09 | Miller T., Costen N., Allen C. | Indium hybridization of large format TES bolometer arrays to readout multiplexers for far-infrared astronomy | J09_abs | J09_pres | J09_prep | |
| J10 | Silverberg R., Benford D., Chen T., Chervenak J., Finkbeiner F., Miller N., Schmidt D., Ullom J. | Superconducting transition-edge sensor bolometers with integrated electron-tunneling refrigerators | J10_abs | J10_pres | J10_prep | |
| J11 | Shiki S., Ukibe M., Shimizugawa Y., Maeda R., Ohkubo M. | Compact radiation shield with fine honeycomb structure and self-standing metal-mesh infrared filter for superconducting array molecule detector | J11_abs | J11_pres | J11_prep | |
| J12 | Bruijn M., Ridder M., Gottardi L., Hoevers H., de Korte P., van der Kuur J. | Advances in fabrication of TES microcalorimeter arrays and associated filter structures for AC-biased readout | J12_abs | J12_prep | ||
| J13 | Iyomoto N., Bandler S., Brekosky R., Brown A., Chervenak J., Figueroa-Feliciano E., Finkbeiner F., Kelley R., Kilbourne C., Porter F;, Sadleir J., Smith S. | Heat sinking, cross talk, and temperature stability for large, close-packed arrays of microcalorimeters | J13_prep | |||
| J14 | Pajot F., Atik Y., Evesque C., Lefranc S., Leriche B., Torre J.-P., Belier B., Marsot N., Dumoulin L., Berge L., Piat M., Breelle E., Prele D., Hoffmann C., Durand T., Camus P., Santos D., Jin Y., Giard M. | Large bolometers arrays with superconducting NbSi sensors for future space experiments | J14_prep | |||
| Wednesday 25th | ||||||
KINETIC
INDUCTANCE DETECTORS |
||||||
Oral |
||||||
8:30 |
K01 | Vayonakis A., Kumar S., Sclaerth, J., Gao Js., Mazin B.A., Day P.K., Golwala S., Glenn J., Leduc H.G., Zmuidzinas J. | Antenna-coupled kinetic inductance detectors for millimeter and submillimeter imaging | |||
8:45 |
K02 | Barends R., Gao J.R., Hovenier J.N., Klapwijk T.M., Baselmans J.J.A., Yates S.J.C., Lankwarden Y.J.Y. | Quasiparticle lifetime and noise in tantalum high Q superconducting resonators for kinetic inductance detectors | K02_prep | ||
9:00 |
K03 | Baselmans J., Yates S., Barends R., Lankwarden J.-J., Gao J., Hoevers H., Klapwijk T. | Noise and sensitivity of aluminum kinetic inductance detectors for sub-mm astronomy | K03_prep | ||
9:15 |
K04 | Dyole S., Mauskopf P., Naylon J., Porch A., Duncombe C. | Lumped element kinetic inductance detectors | K04_prep | ||
Poster |
||||||
9:30 |
K05 | Mazin B., Eckart M., Bumble B., Golwala S., Day P., Zmuidzinas J. | Optical/UV/X-ray microwave kinetic inductance strip detectors | K05_prep | ||
| K06 | Daal M., Sadoulet B., Gao J. | Kinetic inductance phonon sensors for the next generation of dark matter searches | K06_prep | |||
| K07 | Golwala S., Gao J., Moore D., Mazin B., Eckart M., Bumble B., Day P., Leduc H., Zmuidzinas J. | A WIMP dark matter detector using MKIDs | K07_abs | K07_pres | K07_prep | |
| K08 | Gao J., Zmuidzinas J., Mazin B., Day P., Leduc H. | Equivalence of the effects on the complex conductivity of superconductor due to temperature change and external pair breaking | K08_prep | |||
NANOWIRE DETECTORS,
HOT ELECTRON BOLOMETERS |
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Oral |
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9:40 |
L01 | Semenov A., Haas P., Huebers H.-W., Ilin K., Siegel M., Smirnov A. | Energy resolving superconducting nanowire photon counter | L01_prep | ||
9:55 |
L02 | Ejrnaes M., Quaranta O., Gaggero A., Perez de Lara D., Leoni R., Mattioli F., Pagano S., Cristiano R., Nappi C., Lisitskiy M., Esposito E., Gol'tsman G.N., Voronov B. | Parallel NbN nanowires for high speed single photon optical detectors | L02_abs | L02_pres | |
10:10 |
L03 | Guillet B., Drakinskiy V., Arthursson O., Méchin L., Metzner M.-N., Cherednichenko S., Lefevre R., Delorme Y., Krieg J.-M. | Properties of ultra-thin NbN films for membrane-type NbN THz HEB | L03_prep | ||
Poster |
||||||
10:25 |
L04 | Cherednichenko S., Drakinskiy V. | Superconducting hot-electron bolometer mixers for terahertz low noise heterodyne receivers | L04_abs | L04_pres | L04_prep |
| L05 | Leoni R., Gaggero A., Mattioli F., Castellano M.G., Marsili F., Bitauld D., Fiore A., Carelli P. | Characterization of superconducting single photon detectors fabricated on MgO substrates | L05_abs | L05_pres | L05_prep | |
| L06 | Ilin K., Siegel M., Engel A., Bartolf H., Schilling A., Semenov A., Smirnov A., Huebers H.-W. | Current-induced critical state in NbN thin-film structures | L06_abs | L06_pres | L06_prep | |
| L07 | Milostnaya I., Korneev A., Tarkhov M., Divochiy A., Minaeva O., Seleznev V., Kaurova N., Voronov B., Okunev O., Chulkova G., Smirnov K., Gol'tsman G. | Superconducting single photon nanowire detectors development for IR and THz applications | L07_abs | L07_pres | L07_prep | |
NEUTRINO PHYSICS |
||||||
Invited |
||||||
11:00 |
M01 | Giuliani A. | Cryogenic detectors in the neutrino research field | |||
Oral |
||||||
11:30 |
M02 | Nucciotti A., on behalf of the MARE collaboration | The MARE project | M02_prep | ||
11:45 |
M03 | Gatti F., Ribeiro Gomes M., Vaccarone R., Gallinaro G., Valle R., Dussoni S., Ferrari L., Bagliani D. | Study of sensitivity improvement of the Genoa neutrino mass experiment | M03_prep | ||
Poster |
||||||
12:00 |
M04 | Gorla P. | The CUORE experiment: bolometric detectors in 1-ton scale projects | M04_prep | ||
| M05 | Foggetta L., Giuliani A., Rusconi C., Cremonesi O. | A Montecarlo simulation to evaluate the pileup effects on the sensitivity of neutrino mass for the MARE experiment | M05_prep | |||
| M06 | Kraft-Bermuth S., Arnaboldi C., Ferri E., Kilbourne C., Margesin B., McCammon D., Monfardini A., Nucciotti A., Pessina G., Previtali E., Schaeffer D., Sisti M. | Development and characterization of microcalorimeters for a next generation 187Re beta-decay experiment | M06_abs | M06_pres | M06_prep | |
| M07 | Schaeffer D., Ferri E., Kraft-Bermuth S., Nucciotti A., Previtali E., Monfardini A., Kilbourne C., Arnaboldi C., Pessina G., McCammon D., Margesin B., Ceruti G., Sisti M. | Cryogenic design of the setup for Mare-1 in Milano | M07_abs | M07_pres | M07_prep | |
| M08 | Gütlein A., Ciemniak C., Coppi C., von Feilitzsch F., Isaila C., Lanfranchi J.-C., Oberauer L., Pfister S., Potzel W., Roth S., Westphal W. | Development of a cryogenic detector for coherent neutrino nucleus scattering | M08_abs | M08_pres | M08_prep | |
CRYOGENIC TECHNIQUES
AND MATERIALS |
||||||
Invited |
||||||
13:45 |
N01 | A. Benoit et al. | Refrigeration techniques for millikelvin temperatures | |||
Oral |
||||||
14:15 |
N02 | Miller N.A., Beall J.A., Hilton G.C., O'Neil G.C., Schmidt D.R., Vale L.R., Ullom J.N. | Operation of an X-ray transition-edge sensor cooled by tunnel junction refrigerators | N02_abs | N02_pres | N02_prep |
Poster |
||||||
14:30 |
N03 | Prouvé T., Godfrin H., Gianèse C., Triqueneaux S., Ravex A. | Pulse-tube dilution refrigeration below 10 mK for astrophysics | N03_abs | N03_prep | |
| N04 | Risegari L., Barucci M., Lolli L., Ventura G. | Low temperature thermal conductivity of Ti6Al4V ally | N04_abs | N04_pres | ||
| N05 | Kushino A., Kasai S., Ohkubo M. | Development of superconducting coaxial cables for cryogenic detectors | N05_prep | |||
| N06 | Hoshino A., Tokoi K., Ishisaki Y., Ohashi T., Shinozaki K., McCammon D. | Fabrication of CPA salt pill with circulating solution method | N06_abs | N06_pres | N06_prep | |
| N07 | Nucciotti A., Alessandria F., Ardito R., Barucci M., Bucci C., Frossati G., Olcese M., Risegari L., de Waard A. | Design of the cryogen-free cryogenic system for the CUORE experiment | N07_prep | |||
| N08 | Teleberg G., Piccirillo L. | A cryogen-free miniature dilution refrigerator for low-temperature detector applications | N08_prep | |||
| N09 | Mikheev V., Noonan P., Adams A., Batema R. | A completely self-contained cryogen-free dilution refrigerator, the TritonDRTM | ||||
| Thursday 26th | ||||||
ASTRONOMY, FROM MICROWAVES
TO GAMMA RAYS |
||||||
Invited |
||||||
8:30 |
P01 | Verhoeve P. | Astronomy: individual photon detection from near infrared to X-rays | P01_prep | ||
Oral |
||||||
9:00 |
P02 | Day P., Glenn J., Golwala S., Kumar S., Leduc H., Mazin B., Schlaerth J., Vaillancourt J., Vayonakis A., Zmuidzinas J. | A millimeter and submillimeter kinetic inductance detector camera | P02_prep | ||
9:15 |
P03 | Niemack M. on behalf of the ACT collaboration | A kilopixel array of TES bolometers for ACT: development, testing, and first light | P03_abs | P03_pres | P03_prep |
9:30 |
P04 | Lange A. et al. | Bolometer arrays for astronomy from millimeter-waves to far infrared | |||
10:00 |
P05 | Mehl J., Cho H.M., Dobbs M., Halverson N.W., Holzapfel W.L., Lanting T.M., Lee A.T., Lueker M., Plagge T., Richards P.L., Schwan D., Spieler H. | TES bolometer array for the APEX-SZ camera | P05_abs | P05_pres | P05_prep |
Poster |
||||||
10:15 |
P06 | Mitsuda K., Kelley R., McCammon D., Den Herder J.-W., Ohashi T. | Microcalorimeter instruments for spectrum-RG and NeXT missions | P06_abs | P06_pres | P06_prep |
| P07 | Staguhn J., Allen C., Benford D., Sharp E., Ames T., Arendt R., Chuss D., Dwek E., Kovacs A., Maher S., Marx C., Miller T., Moseley S.H., Voellmer G., Wollack E. | GISMO: a 2 mm bolometer camera optimized for the study of high redshift galaxies | P07_prep | |||
| P08 | McCammon D., Barger K., Brandl D.E., Brekosky R.P., Crowder S.G., Gygax J.D., Kelley R.L., Kilbourne C.A., Lindeman M.A., Rocks L.E., Szymkowiak A.E. | The X-ray quantum calorimeter sounding rocket experiment: improvements for the next flight | P08_prep | |||
| P09 | Downes T., Logan D., Perera T. | The optical performance of frequency selective bolometers | ||||
| P10 | Stern R., Rausch A., Deiker S., Martinez-Galarce D., Shing L., Irwin K., Ullom J., Horansky R., O'Neil G., Hilton G., Vale L. | Progress in position sensitive TES strip detectors for solar physics at NIST and LMSAL | P10_abs | P10_prep | ||
| P11 | Oosterbroek T., Martin D., Verhoeve P., Peacock A. | Pile-up correction in S-Cam3 | P11_abs | P11_pres | P11_prep | |
| P12 | Verhoeve P., Martin D., Oosterbroek T., Peacock A. | Cosmic ray background rejection with STJ based photon detectors | ||||
| P13 | de Korte P. on behalf of Eureca collaboration | EURECA: an X-ray imaging spectrometer demonstrator for future X-ray space missions | P13_prep | |||
| P14 | Figueroa-Feliciano E. | Micro-X: the TES microcalorimeter X-ray imaging rocket | P14_prep | |||
MATERIALS ANALYSIS
AND LIFE SCIENCES |
||||||
Invited |
||||||
11:00 |
Q01 | Ullom J. | Analysis of industrial, nuclear, and biological materials with low temperature detectors | Q01_prep | ||
Oral |
||||||
11:30 |
Q02 | Hilton G., Horansky R.D., Beall J.A., Doriese W.B., Reintsema C.D., Ullom J.N., Vale L.R., Bacrania M.K. Hoover A.S., Lamont S.P., Rabin M.W., Rudy C.R., Vo D.T., Kilbourne C.K., Porter F.S., Zink B.L. | Large arrays of multiplexed gamma-ray microcalorimeters for nuclear materials analysis | Q02_prep | ||
11:45 |
Q03 | Ohkubo M., Ukibe M., Chen Y., Sato Y., Tomita S., Hayakawa S. | Superconducting solid-state particle spectrometers for atoms and macromolecules of 3 - 20 keV | Q03_prep | ||
| 12:00 | Q04 | Suzuki K., Miki S., Wang Z., Kobayashi Y., Shiki S., Ohkubo M. | Superconducting NbN thin-film nanowire detectors for time-of-flight mass spectrometry | Q04_abs | Q04_pres | Q04_prep |
Poster |
||||||
12:15 |
Q05 | Perez de Lara D., Cristiano R., Lisitskiy M., Ejrnaes M. | Feasibilty investigation of NbN nanowires as detector in time-of-flight mass spectrometers for macromolecules of interest in biology (proteins) | Q05_abs | Q05_pres | Q05_prep |
| Q06 | Duncan W., Cho H.-M., Doriese W., Hilton G., Irwin K., Reintsema C., Schwall B. | Optical design of human body THz imager using TES arrays at ~4 K | Q06_prep | |||
| Q07 | Leman S., Takahashi H. | Development of a transition edge sensor gamma-ray detector for positron-annihilation-spectroscopy | Q07_abs | Q07_pres | Q07_prep | |
| Q08 | Friedrich S., Drury O.B., George S.J., Cramer S.P. | Synchrotron science with superconducting tunnel junction spectrometers | ||||
DARK MATTER SEARCH |
||||||
Invited |
||||||
15:15 |
R01 | Saab T. | Hot on the tail of the elusive WIMP: cryogenic direct detection searches enter the 21st century | R01_prep | ||
Oral |
||||||
15:45 |
R02 | Mirabolfathi N. on behalf on the CDMS collaboration | Status of the cryogenic dark matter search experiment: CDMS | R02_prep | ||
Poster |
||||||
16:00 |
R03 | Juillard A. for the EDELWEISS collaboration | Status of the EDELWEISS-2 dark matter search | R03_prep | ||
| R04 | Fiorucci S. | Xenon10 and noble liquids dark matter detectors | R04_prep | |||
| R05 | Brink P. for the (Super) CDMS collaboration | Present status of the SuperCDMS program | R05_abs | R05_prep | ||
DETECTORS WITH BACKGROUND
REJECTION CAPABILITIES |
||||||
Invited |
||||||
16:05 |
S01 | Pröbst F. | Detectors with rejection capabilities | |||
Oral |
||||||
17:00 |
S02 | Westphal W., Ciemniak C., Coppi C., von Feilitzsch F., Gütlein A., Isaila C., Lanfranchi J.-C., Pfister S., Potzel W., Rau W., Roth S., Stark M. | Characterization of the response of CaWO4 on recoiling nuclei from surface alpha decays | S02_abs | S02_pres | S02_prep |
17:15 |
S03 | Broniatowski A., Defay X., Juillard A., Marnieros S., Chapellier M., Dumoulin L., Navick X.-F., Schwamm F., and the EDELWEISS collaboration | Cryogenic germanium detectors for dark matter search: surface event rejection with interleaved collection electrodes | S03_abs | S03_prep | |
17:30 |
S04 | Marnieros S., Bergé L., Broniatowski A., Chapellier M., Collin S., Dolgorouky Y., Dumoulin L., Juillard A., Lalu F., Nones C., Olivieri E., and EDELWEISS collaboration | Surface event rejection of the EDELWEISS cryogenic germanium detectors based on NbSi thin film thermometers | S04_prep | ||
17:45 |
S05 | Pedretti M. et al. | Surface sensitive bolometers for the identification of external particles | S05_prep | ||
18:00 |
S06 | Calleja A., Coron N., Garcia E., Gironnet J., Leblanc J., de Marcillac P., Martinez M., Ortigoza Y., Ortiz de Solorzano A., Pobes C;, Puimedon J., Redon T., Sarsa M.L., Torres L., Villar J.A. | Recent performance of scintillating bolometers developed for dark matter searches | S06_prep | ||
18:15 |
S07 | Gorla P., Arnaboldi C., Pessina G., Pirro S., Previtali E., Beeman J., Capelli S., Gironi L., Pavan M., Giachero A. | Scintillating bolometers for double beta decay search | S07_prep | ||
Poster |
||||||
18:30 |
S08 | Elbs J., Bunkov Yu.M., Collin E., Godfrin H., Suvorova O. | Nuclear-electron recoil discrimination by pulse shape analysis in the ULTIMA dark matter detector | S08_prep | ||
| S09 | Pyle M., Sundqvist K., Cabrera B. for the CDMS collaboration | Understanding and maximizing surface event discrimination in CDMS and SuperCDMS detectors through phonon Monte Carlo studies | ||||
| S10 | Coron N., de Marcillac P., Garcia E., Gironnet J., Leblanc J., Martinez M., Ortigoza Y., Pobes C., Puimedon J., Redon T., Sarsa M.L., Torres L., Villar J.A. | Measurement of the nuclear recoil thermal relative efficiency factor with an undoped sapphire scintillating bolometer | S10_abs | S10_pres | S10_prep | |
| S11 | Nones C., Bergé L., Collin S., Dumoulin L., Juillard A., Marnieros S., Olivieri E. | New TeO2/NbSi detectors for the search for rare events | S11_prep | |||
| S12 | Dolgorouky Y., Bergé L., Broniatowski A., Chapellier M., Collin S., Dumoulin L., Juillard A., Lalu F., Marnieros S., Nones C., Olivieri E., Collaboration EDELWEISS | Optimization of cryogenic Ge detectors equipped with NbSi thin film thermometers: fiducial volume determination and energy resolution | S12_prep | |||
| S13 | Olivieri E., Bergé L., Chapellier M., Collin S., Dumoulin L., Juillard A., Marnieros S., Nones C. | Modelization of the surface-event identification mechanism in Ge detectors equipped with NbSi thin films | S13_abs | S13_pres | S13_prep | |
| S14 | Navick X.-F., EDELWEISS collaboration | Surface contamination by radon daughters measured by ionization-heat NTD germanium | S14_prep | |||
| S15 | Broniatowski A., Defay X., Juillard A., Marnieros S., Chapellier M., Dumoulin L., Bergé L., Navick X.-F., and the EDELWEISS collaboration | Design and implementation of a germanium cryogenic detector for dark matter search fitted with interleaved electrodes for surface event rejection | S15_abs | S15_pres | S15_prep | |
| S16 | Di Stefano P., Coron N., de Marcillac P., Dujardin C., Luca M., Petricca F., Proebst F., Verdier M.-A. | Low-temperature scintillation of sapphire | S16_prep | |||
| Friday 27th | ||||||
SQUIDS, SQUID
ELECTRONICS AND MULTIPLEXING |
||||||
Invited |
||||||
8:30 |
T01 | Irwin K. | Readout of large-format low-temperature detector arrays | |||
Oral |
||||||
9:00 |
T02 | Beyer J., Drung D., Ruede F., Peters M., Schurig T. | Advanced SQUID-array-based current sensors for TES readout | |||
9:15 |
T03 | Halpern M., Battistelli E.S. | Read-out electronics for time-domain multiplexed bolometers for millimetric and sub-millimetric astronomy | T03_prep | ||
9:30 |
T04 | Lehnert K.W., Castellanos-Beltran M.A., Hilton G., Irwin K., Mates B., Vale L. | Noise analysis of microwave frequency division multiplexers | |||
9:45 |
T05 | Vaccarone R., Strata F. | An analysis of stability and noise in frequency multiplexed TES arrays | T05_prep | ||
Poster |
||||||
10:00 |
T06 | Vaccarone R., Strata F., Gati F., Gallinaro G., Ribeiro Gomes M., Ferraris L., Parodi L. | The design of a frequency multiplexed Ir-Au TES array | T06_prep | ||
| T07 | Mates J.A.B., Hilton G.C., Irwin K.D., Lehnert K.W., Vale L.R. | A microwave SQUID multiplexer for low-temperature detectors | ||||
| T08 | Reintsema C., Beall J., Doriese W., Duncan W., Ferreira L., Hilton G., Irwin K., Schmidt D., Ullom J., Vale L., Xu Y. | A TDMA SQUID multiplexer for the read-out of high-speed large-format detector arrays | T08_abs | T08_pres | T08_prep | |
| T09 | van der Kuur J., Bruijn M., Bakker F., Gottardi L., Hoevers H., Kiviranta M., de Korte P., Takei Y. | Recent progress in the development of frequency domain multiplexing for microcalorimeter readout | ||||
| T10 | Boyd S.T.P., Cantor R., Hall J.Ad, Blumenfeld P. | Characterization of a miniature thin-film SQUID susceptometer for metallic magnetic microcalorimetry | ||||
| T11 | Hahn I., Day P., Limketkai B., Bumble B., Leduc H.G. | Recent results of a new microwave SQUID multiplexer | T11_abs | T11_pres | T11_prep | |
| T12 | Benoit A., Camus P., Cavanna A., Durand T., Etienne B., Gennser U., Grémion E., Hoffmann C., Jin Y., Leclercq S., Monfardini A., Ulysse C., Yates S.J.C. | A time domain multiplexer for large arrays of high impedance low temperature bolometers | T12_abs | T12_pres | T12_prep | |
| T13 | Lee A., Benson B., Cho S.H.-M., Clark J., Dobbs M., Holzapfel W., Lanting T., Lueker M., Mehl J., Plagge T., Richards P., Shirokoff E., Schwan D., Spieler H. | Frequency-domain multiplexing for transition-edge sensors | ||||
| T14 | Kimura S., Masui K., Takei Y., Mitsuda K., Yamasaki N.Y., Fujimoto R., Morooka T., Nakayama S. | Performance measurements of the 8-input SQUIDs for TES frequency domain multiplexing | T14_prep | |||
| T15 | Kiviranta M. | A large dynamic range SQUID readout intended for frequency domain multiplexing | T15_abs | T15_prep | ||
| T16 | Dreyer J., Velazquez M., Drury O.B., Friedrich S., Lueker M., Arnold K., Lee A.T., Spieler H.G. | Frequency-multiplexing for multi-channel superconducting gamma-ray spectrometers | T16_prep | |||
SIGNAL READOUT AND
PROCESSING |
||||||
Oral |
||||||
10:50 |
U01 | Arnaboldi C., Pessina G. | The design of the input stage for the very front-end of the CUORE experiment | U01_prep | ||
| U02 | Grémion E., Liang Y.-X., Cavanna A., Gennser U., Cheng M.-C., Fesquet M., Chardin G., Benoit A., Jin Y. | Development of ultra-low noise HEMTs for cryoelectronics at 4.2 K | U02_prep | |||
| U03 | Cibella S., Leoni R., Torrioli G., Castellano M.G., Coppa A., Mattioli F. | Electrical characterization of a superconducting hot spot microbolometer | U03_abs | U03_pres | U03_prep | |
| U04 | Gonzalez-Cano A., Devoille L., Feltin N., Steck B., Piquemal F. | A 20000 turns cryogenic current comparator for low level current measurements: characterization and analysis of its frequency behaviour | ||||
Poster |
||||||
11:50 |
U05 | Galeazzi M., Armstrong J., Bogorin D. | Transformers to read out arrays of microcalorimeters | U05_prep | ||
| U06 | Kumar S., Vayonakis A., Leduc H.G., Zmuidzinas J. | Millimeter wave lumped element superconducting band pass filters | ||||
| U07 | Andrianov V., Bleile A., Egelhof P., Kiselev O., Kraft-Bermuth S., Meier J. | Suppression of the harmonic noise in the signals of calorimetric detectors | U07_abs | U07_pres | ||
| U08 | Maher S. | Solftware framework concepts to support high rate detector systems | ||||
| U09 | Parodi L., Gatti F., Ribeiro Gomes M., Valle R., Vaccarone R., Bevilacqua A., Ferrari L., Bagliani D. | Alternative readout electronics for superconducting transition edge sensors | U09_abs | U09_prep | ||
| U10 | Hagihara T., Mitsuda K., Yamasaki N., Nomachi M., Takei Y., Kokubun M., Yuasa T., Odaka H. | Development of high count-rate digital processing system with spacewire for TES-calorimeter array | U10_abs | U10_pres | U10_prep | |
| U11 | Oh L., Allen C., Kelley R. | Fabrication of a thermally isolated and pre-amplified transistor module with polyimide micro-wires for cryogenics detectors | U11_prep | |||
| U12 | Smith S., Bandler S., Figueroa-Feliciano E., Iyomoto N., Kelley R., Kilbourne C., Porter F., Sadleir J. | Practical considerations for optimizing position sensitivity in arrays of position-sensitive TESs | U12_abs | U12_pres | U12_prep | |
| U13 | Benford D., Staguhn J., Allen C., Sharp E. | Norton-corrected measurement of complex impedances of a large format bolometer array | U13_prep | |||
| U14 | Nagata H., Kobayashi J., Matsuo H., Kobayashi K., Misato N., Ikeda H., Fujiwara M. | Fabrication of cryogenic readout circuits with n-type GaAs-JFETs for low temperature detectors | U14_abs | U14_pres | U14_prep | |
| U15 | Benoit A., Broniatowski A., Brès G. and the EDELWEISS collaboration | Design and implementation of a wide band amplifier for measuring the shape of the ionization pulse in ionization/heat germanium detectors for dark matter search | ||||
| U16 | Prêle D., Klisnick G., Sou G., Redon M., Voisin F., Bréelle E., Piat M. | Standard SiGe technologies operating at 4 K for front-end readout of SQUID arrays | U16_abs | U16_pres | U16_prep | |
QUANTUM ELECTRONICS |
||||||
Oral |
||||||
13:45 |
V01 | Estève D. | Quantum electrical circuits | V01_prep | ||
ATOMIC, NUCLEAR AND
PARTICLE PHYSICS |
||||||
Oral |
||||||
14:15 |
W01 | Shibata M., Matsuki S., Mizusaki T., Sawada A., Imai K., Funahashi H., Ikeda S., Yamamoto K., Kido Y., Nishimura T., Matsubara A., Arai T., Hukuda A., Isozumi Y., Tosaki M. | Improving the sensitivity to search for dark-matter axions with the Kyoto Rydberg-atom single-photon detector at low temperature of 10 mK range | W01_prep | ||
14:30 |
W02 | Andrianov V., Beckert K., Beller P., Bleile A., Egelhof P., Gumberidse A., Ilieva S., Kiselev O., Kilbourne C., Kluge H.-j., Kraft-Bermuth S., McCammon D., Meier J.P., Reuschl R., Stöhlker T. | First experiments aiming for precise lamb shift measurements on hydrogen-like heavy ions with low temperature calorimeters | W02_prep | ||
14:45 |
W03 | Loidl M., Leblanc E., Rodrigues M., Bouchard J., Censier B. | Metallic magnetic calorimeters for absolute activity measurement | W03_prep | ||
15:00 |
W04 | Porter F., Bandler S., Beierdorfer P., Brown G., Doriese W., Gygax J., Kelley R., Kilbourne C., King J., Irwin K., Reintsema C., Ullom J. | The EBIT calorimeter spectrometer: a new, permanent user facility at the LLNL EBIT | W04_prep | ||
15:15 |
W05 | Horansky R.D., Ullom J.N., Beall J.A., Hilton G.C., Irwin K.D., Vale L.R., Dry D.E., Lamont S.P., Rudy C.R., Rabin M.W. | Analysis of nuclear material by alpha spectroscopy with a transition-edge microcalorimeter | W05_abs | W05_pres | W05_prep |
15:30 |
W06 | Ishida T., Nishikawa M., Fujita Y., Okayasu S., Katagiri M., Satoh K., Yotsuya T., Shimakage H., Miki S., Wang Z., Machida M., Kato M. | Superconducting MgB2 film detector for neutrons | W06_prep | ||
Poster |
||||||
15:45 |
W07 | Rodrigues M., Loidl M., Leblanc E., Bouchard J., Censier B., Fleischmann A., Burck A., Rotzinger H., Enss C. | A metallic magnetic calorimeter for hard X-ray and gamma ray spectrometry (10 keV - 200 keV) | W07_prep | ||
| W08 | Rotzinger H., Linck M., Burck A., Rodrigues M., Loidl M., Leblanc E., Gastaldo L., Fleischmann A., Enss C. | Beta spectrometry with magnetic calorimeters | W08_abs | W08_prep | ||
| W09 | Echler A., Andrianov V., Bleile A., Egelhof P., Ilieva S., Kiselev O., Kraft-Bermuth S., Meier J.P. | Development of an array of calorimetric low temperature detectors for heavy ions | W09_abs | |||