高温超导吸收体热电单光子探测器探测像元热传播过程建模

IF 0.5 4区 物理与天体物理 Q4 PHYSICS, MULTIDISCIPLINARY Journal of Contemporary Physics (Armenian Academy of Sciences) Pub Date : 2022-05-27 DOI:10.3103/S1068337222020141
A. A. Kuzanyan, V. R. Nikoghosyan, N. G. Margiani, G. A. Mumladze, S. R. Harutyunyan, A. S. Kuzanyan
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引用次数: 2

摘要

采用计算机模拟的方法,研究了热电单光子探测器在吸收0.8 ~ 1000ev能量光子后,其五层探测像元内的热传播过程。提出了在蓝宝石衬底上由散热片Bi2223、热电传感器CeB6、吸收体Bi2223和增透层SiO2组成的连续层检测像素的设计方案。基于有限体积下的热传播方程,采用微分方程的三维矩阵法进行了计算机模拟。确定了检测像素层的不同厚度对信号强度的时间依赖性。结果表明,检测像素SiO2/Bi2223/CeB6/Bi2223/Al2O3可以在近红外到x射线的宽光谱范围内记录单光子,同时吸收的光子数可达8个。在设计检测像素时采用高温超导体Bi2223,提供了千兆赫的计数率和较高的系统检测效率。检测像素的简单设计是创建多像素传感器的先决条件。在不久的将来,具有这种特性的探测器将成为下一代单光子探测器的代表。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Modeling of Heat Propagation Processes in Detection Pixel of Thermoelectric Single-Photon Detector with High-Temperature Superconducting Absorber

The processes of heat propagation in five-layer detection pixels of the thermoelectric single-photon detector after absorption of 0.8–1000 eV energy photons are investigated by the method of computer simulation. Design of the detection pixel consisting of successive layers on a sapphire substrate of heat sink Bi2223, thermoelectric sensor CeB6, absorber Bi2223, and the antireflection layer SiO2 is proposed. The computer modelling was carried out based on the equation of heat propagation from the limited volume by the use of the three-dimensional matrix method for differential equations. Temporal dependences of the signal intensity for different thicknesses of the layers of the detection pixel are determined. It is shown that the detection pixel SiO2/Bi2223/CeB6/Bi2223/Al2O3 can register single photons in a wide spectral range from near-IR to X-ray, as well as count the number of simultaneously absorbed photons up to eight. The use of Bi2223 high-temperature superconductor in the design of the detection pixel provides a gigahertz count rate and high system detection efficiency. The simple design of the detection pixel is a prerequisite for the creation of multi-pixel sensors. A detector with such characteristics could be representative of the next generation single-photon detectors in the near future.

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来源期刊
CiteScore
1.00
自引率
66.70%
发文量
43
审稿时长
6-12 weeks
期刊介绍: Journal of Contemporary Physics (Armenian Academy of Sciences) is a journal that covers all fields of modern physics. It publishes significant contributions in such areas of theoretical and applied science as interaction of elementary particles at superhigh energies, elementary particle physics, charged particle interactions with matter, physics of semiconductors and semiconductor devices, physics of condensed matter, radiophysics and radioelectronics, optics and quantum electronics, quantum size effects, nanophysics, sensorics, and superconductivity.
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