Development of Microwave Kinetic Inductance Detectors for a Detection of Phonons (Englisch)
Freier Zugriff
- Neue Suche nach: Ishino, H.
- Neue Suche nach: Kibayashi, A.
- Neue Suche nach: Hattori, K.
- Neue Suche nach: Hazumi, M.
- Neue Suche nach: Kibe, Y.
- Neue Suche nach: Mima, S.
- Neue Suche nach: Sato, N.
- Neue Suche nach: Yoshida, M.
- Neue Suche nach: Watanabe, H.
- Neue Suche nach: Ishino, H.
- Neue Suche nach: Kibayashi, A.
- Neue Suche nach: Hattori, K.
- Neue Suche nach: Hazumi, M.
- Neue Suche nach: Kibe, Y.
- Neue Suche nach: Mima, S.
- Neue Suche nach: Sato, N.
- Neue Suche nach: Yoshida, M.
- Neue Suche nach: Watanabe, H.
In:
Journal of Low Temperature Physics
;
176
, 3-4
; 161-167
;
2013
-
ISSN:
- Aufsatz (Zeitschrift) / Elektronische Ressource
-
Titel:Development of Microwave Kinetic Inductance Detectors for a Detection of Phonons
-
Beteiligte:Ishino, H. ( Autor:in ) / Kibayashi, A. ( Autor:in ) / Hattori, K. ( Autor:in ) / Hazumi, M. ( Autor:in ) / Kibe, Y. ( Autor:in ) / Mima, S. ( Autor:in ) / Sato, N. ( Autor:in ) / Yoshida, M. ( Autor:in ) / Watanabe, H. ( Autor:in )
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Erschienen in:Journal of Low Temperature Physics ; 176, 3-4 ; 161-167
-
Verlag:
- Neue Suche nach: Springer US
- Neue Suche nach: Springer Science + Business Media B.V.
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Erscheinungsort:Dordrecht
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Erscheinungsdatum:2013
-
ISSN:
-
ZDBID:
-
DOI:
-
Medientyp:Aufsatz (Zeitschrift)
-
Format:Elektronische Ressource
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Sprache:Englisch
- Neue Suche nach: 33.60$jKondensierte Materie: Allgemeines / 33.30$jAtomphysik$jMolekülphysik / 33.09$jPhysik unter besonderen Bedingungen / 33.09 / 33.30 / 33.60
- Weitere Informationen zu Basisklassifikation
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Schlagwörter:
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Klassifikation:
BKL: 33.60$jKondensierte Materie: Allgemeines / 33.30$jAtomphysik$jMolekülphysik / 33.09$jPhysik unter besonderen Bedingungen / 33.09 Physik unter besonderen Bedingungen / 33.30 Atomphysik, Molekülphysik / 33.60 Kondensierte Materie: Allgemeines -
Datenquelle:
Inhaltsverzeichnis – Band 176, Ausgabe 3-4
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- 131
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Preface| 2014
- 134
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LTD Committees List| 2014
- 136
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Properties of TiN for Detector and Amplifier ApplicationsGao, J. / Vissers, M. R. / Sandberg, M. / Li, D. / Cho, H. M. / Bockstiegel, C. / Mazin, B. A. / Leduc, H. G. / Chaudhuri, S. / Pappas, D. P. et al. | 2014
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- 148
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- 155
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Critical Temperature Tuning of Ti/TiN Multilayer Films Suitable for Low Temperature DetectorsGiachero, A. / Day, P. / Falferi, P. / Faverzani, M. / Ferri, E. / Giordano, C. / Marghesin, B. / Mattedi, F. / Mezzena, R. / Nizzolo, R. et al. | 2014
- 161
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Development of Microwave Kinetic Inductance Detectors for a Detection of PhononsIshino, H. / Kibayashi, A. / Hattori, K. / Hazumi, M. / Kibe, Y. / Mima, S. / Sato, N. / Yoshida, M. / Watanabe, H. et al. | 2013
- 168
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Quasiparticle Diffusion in Al Films Coupled to Tungsten Transition Edge SensorsYen, J. J. / Young, B. A. / Cabrera, B. / Brink, P. L. / Cherry, M. / Moffatt, R. / Pyle, M. / Redl, P. / Tomada, A. / Tortorici, E. C. et al. | 2013
- 176
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- 182
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- 188
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Neganov–Luke Phonon Amplification in P-type Point Contact DetectorsMirabolfathi, N. / Amman, M. / Faiez, D. / Luke, P. N. / Martin, R. D. / Rolla, J. A. / Sadoulet, B. / Serfass, B. / Vetter, K. et al. | 2014
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- 228
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- 237
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Atomic Layer Deposition of Tunnel Barriers for Superconducting Tunnel JunctionsMoyerman, Stephanie M. / Feng, Guangyuan / Krayer, Lisa / Stebor, Nathan / Keating, Brian G. et al. | 2014
- 243
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- 249
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- 255
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- 261
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- 267
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Fast and High Dynamic Range Imaging with Superconducting Tunnel Junction DetectorsMatsuo, Hiroshi et al. | 2013
- 273
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- 279
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Weak-Link Phenomena in AC-Biased Transition Edge SensorsGottardi, L. / Akamatsu, H. / Bruijn, M. / Gao, J.-R. / den Hartog, R. / Hijmering, R. / Hoevers, H. / Khosropanah, P. / Kozorezov, A. / van der Kuur, J. et al. | 2014
- 285
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Transition-Edge Sensors for Particle Induced X-ray Emission MeasurementsPalosaari, M. R. J. / Kinnunen, K. M. / Julin, J. / Laitinen, M. / Napari, M. / Sajavaara, T. / Doriese, W. B. / Fowler, J. / Reintsema, C. / Swetz, D. et al. | 2013
- 291
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- 299
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- 304
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- 310
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- 316
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Comparison of the Effects of Magnetic Field on Low Noise MoAu and TiAu TES BolometersHijmering, R. A. / Khosropanah, P. / Ridder, M. / Gao, J. R. / Hoevers, H. / Jackson, B. / Goldie, D. / Withington, S. / Kozorezov, A. G. et al. | 2014
- 323
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Sensitivity to Cosmic Rays of Cold Electron Bolometers for Space ApplicationsSalatino, M. / de Bernardis, P. / Kuzmin, L. S. / Mahashabde, S. / Masi, S. et al. | 2014
- 331
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Large Area Transition Edge Sensor X-ray Microcalorimeters for Diffuse X-ray Background StudiesMorgan, K. M. / Busch, S. E. / Eckart, M. E. / Kilbourne, C. A. / McCammon, D. et al. | 2013
- 337
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A Mo/Au Bilayer Transition Edge Sensor Modified with Normal Metal StructuresWang, G. / Yefremenko, V. / Chang, C. L. / Mehl, J. / Novosad, V. / Pearson, J. / Divan, R. / Carlstrom, J. E. et al. | 2013
- 344
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Radiation Tolerance Evaluation of the Ti/Au Bilayer TES MicrocalorimeterIshisaki, Y. / Enokijima, Y. / Ezoe, Y. / Ohashi, T. / Akamatsu, H. / Yamamoto, R. / Takei, Y. / Mitsuda, K. / Yamasaki, N. Y. / Yamada, S. et al. | 2014
- 350
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Complementary Measurement of Thermal Architecture of NbSi TES with Alpha Particle and Complex ImpedanceMartino, J. / Miniussi, A. / Piat, M. / Prêle, D. / Pajot, F. / Decourcelle, T. / Voisin, F. / Bélier, B. / Coron, N. / Ghribi, A. et al. | 2014
- 356
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Characterization of Mo/Au Transition-Edge Sensors with Different Geometric ConfigurationsSmith, S. J. / Adams, J. S. / Bandler, S. R. / Busch, S. E. / Chervenak, J. A. / Eckart, M. E. / Finkbeiner, F. M. / Kelley, R. L. / Kilbourne, C. A. / Lee, S. J. et al. | 2013
- 363
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Diffusion Behaviour in Superconducting Ti/Au bilayers for SAFARI TES Detectorsvan der Heijden, N. J. / Khosropanah, P. / van der Kuur, J. / Ridder, M. L. et al. | 2014
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Toward a Detector/Readout Architecture for the Background-Limited Far-IR/Submm Spectrograph (BLISS)Kenyon, M. / Beyer, A. D. / Bumble, B. / Echternach, P. M. / Holmes, W. A. / Bradford, C. M. et al. | 2014
- 383
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A Study of Al–Mn Transition Edge Sensor Engineering for StabilityGeorge, E. M. / Austermann, J. E. / Beall, J. A. / Becker, D. / Benson, B. A. / Bleem, L. E. / Carlstrom, J. E. / Chang, C. L. / Cho, H.-M. / Crites, A. T. et al. | 2014
- 392
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The Magnetically-Tuned Transition-Edge SensorSadleir, John E. / Lee, Sang-Jun / Smith, Stephen J. / Busch, Sarah E. / Bandler, Simon R. / Adams, Joseph S. / Eckart, Megan E. / Chervenak, James A. / Kelley, Richard L. / Kilbourne, Caroline A. et al. | 2014
- 400
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Baseband Feedback Frequency-Division Multiplexing with Low-Power dc-SQUIDs and Digital Electronics for TES X-Ray MicrocalorimetersSakai, K. / Takei, Y. / Yamamoto, R. / Yamasaki, N. Y. / Mitsuda, K. / Hidaka, M. / Nagasawa, S. / Kohjiro, S. / Miyazaki, T. et al. | 2014
- 408
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Feasibility of a Frequency-Multiplexed TES Read-Out Using Superconducting Tunnel Junctionsde Lange, G. et al. | 2014
- 414
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Maximum-Likelihood Fits to Histograms for Improved Parameter EstimationFowler, J. W. et al. | 2014
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Progress on the FDM Development at SRON: Toward 160 Pixelsden Hartog, R. H. / Bruijn, M. P. / Clenet, A. / Gottardi, L. / Hijmering, R. / Jackson, B. D. / van der Kuur, J. / van Leeuwen, B. J. / van der Linden, A. J. / van Loon, D. et al. | 2014
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New Method for Determining the Quality Factor and Resonance Frequency of Superconducting Micro-Resonators from Sonnet SimulationsWisbey, D. S. / Martin, A. / Reinisch, A. / Gao, J. et al. | 2014
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