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This article is cited in 3 scientific papers (total in 3 papers)
XV International Conference ''Thermoelectrics and Their Applications-2016 St. Petersburg'', November 15-16, 2016
Prospects of using rare-earth hexaborides in thermoelectric single-photon detectors
A. S. Kuzanyana, A. A. Kuzanyana, V. R. Nikogosyana, V. N. Gurinb, M. P. Volkovb a Institute for Physical Research NAS of Armenia, Ashtarak, Armenia
b Ioffe Institute, St. Petersburg
Abstract:
The results of the numerical simulation of heat propagation processes occurring after the absorption of single photons with energies of 1 eV–1 keV in a three-layer sensor of a thermoelectric detector are analyzed. Different configurations of the sensor with a tungsten absorber, a thermoelectric layer of cerium hexaboride, and a tungsten heat sink are considered. It is shown that sensors for detecting photons of a specific spectral range with the required energy resolution and counting rate can be developed by varying the geometric sizes of the sensor layers. It is concluded that a three-layer sensor has a number of advantages in comparison with a single-layer sensor and has characteristics allowing consideration of the thermoelectric detector as a realistic alternative to superconducting single-photon detectors.
Received: 27.12.2016 Accepted: 12.01.2017
Citation:
A. S. Kuzanyan, A. A. Kuzanyan, V. R. Nikogosyan, V. N. Gurin, M. P. Volkov, “Prospects of using rare-earth hexaborides in thermoelectric single-photon detectors”, Fizika i Tekhnika Poluprovodnikov, 51:7 (2017), 908–911; Semiconductors, 51:7 (2017), 870–873
Linking options:
https://www.mathnet.ru/eng/phts6096 https://www.mathnet.ru/eng/phts/v51/i7/p908
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