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Designs and Optical Tests of Thermal Links for an Optical Refrigerator

机译:光学冰箱热链接的设计和光学测试

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摘要

Dielectric mirror leakage at large angles of incidence limits the effectiveness of solid state optical refrigerators due to reheating caused by photon absorption in an attached load. In this paper, we present several thermally conductive link solutions to greatly reduce the net photon absorption. The Los Alamos Solid State Optical Refrigerator (LASSOR) has demonstrated cooling of a Yb/sup 3+/ doped ZBLANP glass to 208 K. We have designed optically isolating thermal link geometries capable of extending cooling to a typical heat load with minimal absorptive reheating, and we have tested the optical performance of these designs. A surrogate source operating at 625 nm was used to mimic the angular distribution of light from the LASSOR cooling element. While total link performance is dependent on additional factors, we have found that the best thermal link reduced the net transmission of photons to 0.04%, which includes the trapping mirrors 8.1% transmission. Our measurements of the optical performance of the various link geometries are supported by computer simulations of the designs using Code V, a commercially available optical modeling software package.
机译:大入射角的介电镜泄漏会限制固态光学制冷器的效率,这是由于附加负载中的光子吸收引起的再加热所致。在本文中,我们提出了几种导热链接解决方案,以大大降低净光子吸收。洛斯阿拉莫斯固态光学冰箱(LASSOR)已证明将Yb / sup 3 + /掺杂ZBLANP玻璃冷却至208K。我们已经测试了这些设计的光学性能。使用在625 nm处工作的替代光源来模拟来自LASSOR冷却元件的光的角度分布。虽然总链路性能取决于其他因素,但我们发现最佳的热链路将光子的净透射率降低至0.04%,其中包括捕获镜的透射率达到8.1%。我们使用Code V(一种商用光学建模软件包)对设计进行计算机模拟,从而支持我们对各种链路几何形状的光学性能的测量。

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