led中热电制冷与电致发光制冷的相互作用

Shui-Qing Yu, Jiang-Bo Wang, D. Ding, S. Johnson, Yong-Hang Zhang
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引用次数: 1

摘要

无振动固态光学冷却器在许多应用中,特别是在卫星和其他空间系统中,是取代机械斯特林冷却器的有希望的候选者。在许多可能的方法中,使用发光二极管(led)的电致发光制冷是一种非常理想的方法,因为led易于与电子和光学器件集成以提供局部冷却。由于led中的电致发光制冷涉及热电(TE)和光学过程,因此需要了解这些效应之间的相互作用。本文介绍了电致发光制冷技术在led中TE冷却效应的研究。与传统的TE冷却器只提供传热不同,电致发光冷却器可以实现净冷却。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Interplay of thermoelectric cooling and electroluminescence refrigeration in LEDs
Vibration-free solid-state optical coolers are promising candidates to replace mechanical Stirling coolers in many applications, especially in satellites and other space based systems. Among the many possible approaches, electroluminescence refrigeration using light emitting diodes (LEDs) is a highly desirable approach since LEDs are easy to integrate with electronic and optical devices to provide local cooling. Since electroluminescence refrigeration in LEDs involves both thermoelectric (TE) and optical processes, the interplay between these effects needs to be understood. In this paper, the study of electroluminescence refrigeration involving TE cooling effects in LEDs is presented. Unlike conventional TE coolers, which only provide heat transfer, electroluminescence coolers can achieve net cooling.
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