From a gas thermometer to a terahertz matrix (a review)

I. Gibin, P. Kotlyar
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Abstract

The history of the invention and development of the gas thermometer and the ap-pearance of optical-acoustic receivers (OAP) based on it, starting from the first works of Bell, Hayes, Golay, and up to the present time, are considered. The ad-vantages of the OAP, consisting in a constant and high sensitivity in a wide range of the spectrum and the highest detection ability among thermal receivers, are not-ed. The main characteristics of membranes – the main elements of OAP-are con-sidered, and the physical properties of graphene, as the most preferred material for membranes, are analyzed. Estimates have been made showing that the use of SLG graphene membranes makes it possible to create IR and THZ radiation re-ceivers with cells of the order of tens of microns with extremely high sensitivity. A new design scheme is proposed for uncooled matrix helium-graphene optical-acoustic receivers with theoretically extreme sensitivity and speed and an operating range extended to helium temperatures.
从气体温度计到太赫兹矩阵(回顾)
本文回顾了气体温度计的发明和发展历史,以及基于气体温度计的光声接收机(OAP)的出现,从贝尔、海斯、戈莱的第一部作品开始,一直到现在。OAP在广泛的光谱范围内具有恒定和高灵敏度,是热接收机中检测能力最高的优点,但没有被忽视。考虑了膜的主要特征- oap的主要元素,并分析了石墨烯作为膜的首选材料的物理性质。据估计,使用SLG石墨烯膜可以制造出具有极高灵敏度的数十微米级细胞的红外和太赫兹辐射接收器。提出了一种新的非冷却矩阵氦-石墨烯光声接收机的设计方案,该方案理论上具有极高的灵敏度和速度,并且工作范围扩展到氦温度。
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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