激光冷却
辐射冷却
材料科学
低温冷却器
激光器
荧光
固体激光器
辐射
解决边带冷却问题
主动冷却
光学
核工程
光电子学
水冷
物理
热力学
工程类
作者
Richard I. Epstein,M. I. Buchwald,B. C. Edwards,T. R. Gosnell,Carl E. Mungan
出处
期刊:Nature
[Nature Portfolio]
日期:1995-10-01
卷期号:377 (6549): 500-503
被引量:691
摘要
THE possibility that an object might cool through its interaction with radiation was suggested as early as 1929 by Pringsheim1. After Landau2 established the basic thermodynamic consistency of such a process, certain aspects of fluorescent cooling were vigorously pursued3a¤-11. In particular, laser 'Doppler' cooling of gas-phase atoms and ions has today grown into a robust research area12a¤-15. In contrast, attempts to cool solids with light have met with limited success; non-radiative heating effects tend to dominate, and fluorescent cooling has at best resulted in a reduction in overall heating rates6. Here we report the experimental realization of net cooling of a solid with radiation. The cooling efficiencies achieved (up to 2%) are more than 104 times those observed in Doppler cooling of gases. By pumping a fluorescent cooling element with a high-efficiency diode laser, it may be possible to construct a compact, solid-state optical cryocooler, thereby allowing widespread deployment of cryogenic electronics and detectors in space and elsewhere16.
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