Josephson Effects in Frequency-Domain Multiplexed TES Microcalorimeters and Bolometers

被引:0
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作者
L. Gottardi
S. J. Smith
A. Kozorezov
H. Akamatsu
J. van der Kuur
S. R. Bandler
M. P. Bruijn
J. A. Chervenak
J. R. Gao
R. H. den Hartog
B. D. Jackson
P. Khosropanah
A. Miniussi
K. Nagayoshi
M. Ridder
J. Sadleir
K. Sakai
N. Wakeham
机构
[1] SRON National Institute for Space Research,Department of Physics
[2] NASA Goddard Space Flight Center,Kavli Institute of NanoScience, Faculty of Applied Sciences
[3] CRESST and University of Maryland,NASA Postdoctoral Program
[4] Lancaster University,undefined
[5] SRON Netherlands Institute for Space Research,undefined
[6] NASA Goddard Space Flight Center,undefined
[7] Delft University of Technology,undefined
[8] Universities Space Research Assoc.,undefined
[9] CRESST II - UMBC,undefined
来源
关键词
Josephson effect; Frequency-domain multiplexing; Transition-edge sensors;
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学科分类号
摘要
Frequency-division multiplexing is the baseline read-out system for large arrays of superconducting transition-edge sensors (TES’s) under development for the X-ray and infrared instruments like X-IFU (Athena) and SAFARI, respectively. In this multiplexing scheme, the sensors are ac-biased at different frequencies from 1 to 5 MHz and operate as amplitude modulators. Weak superconductivity is responsible for the complex TES resistive transition, experimentally explored in great detail so far, both with dc- and ac-biased read-out schemes. In this paper, we will review the current status of our understanding of the physics of the TES’s and their interaction with the ac bias circuit. In particular, we will compare the behaviour of the TES nonlinear impedance, across the superconducting transition, for several detector families, namely: high-normal-resistance TiAu TES bolometers, low-normal-resistance MoAu TES microcalorimeters and high-normal-resistance TiAu TES microcalorimeters.
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页码:209 / 216
页数:7
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