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For:
Zhou Y
, Ambarish CV, Gruenke R, Jaeckel FT, Kripps KL, McCammon D, Morgan KM, Wulf D, Zhang S, Adams JS, Bandler SR, Chervenak JA, Datesman AM, Eckart ME, Ewin AJ, Finkbeiner FM, Kelley RL, Kilbourne CA, Miniussi AR, Porter FS, Sadleir JE, Sakai K, Smith SJ, Wakeham NA, Wassell EJ, Yoon W.
Mapping TES Temperature Sensitivity and Current Sensitivity as a Function of Temperature, Current, and Magnetic Field with
IV
curve and Complex Admittance Measurements.
J Low Temp Phys
2018;
193
:321-327. [PMID:
31186584
PMCID:
PMC6557576
DOI:
10.1007/s10909-018-1970-8
]
[
Citation(s) in
RCA
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[Received: 11/06/2017]
[Accepted: 05/14/2018]
[Indexed: 06/09/2023]
Number
Cited by Other Article(s)
1
A Review of X-ray Microcalorimeters Based on Superconducting Transition Edge Sensors for Astrophysics and Particle Physics.
APPLIED SCIENCES-BASEL
2021. [DOI:
10.3390/app11093793
]
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Citation(s) in
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[Indexed: 02/07/2023]
Abstract
The state-of-the-art technology of X-ray microcalorimeters based on superconducting transition-edge sensors (TESs), for applications in astrophysics and particle physics, is reviewed. We will show the advance in understanding the detector physics and describe the recent breakthroughs in the TES design that are opening the way towards the fabrication and the read-out of very large arrays of pixels with unprecedented energy resolution. The most challenging low temperature instruments for space- and ground-base experiments will be described.
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