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Stimulated radiative laser cooling

机译:受激辐射激光冷却

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摘要

Building a refrigerator based on the conversion of heat into optical energy is an ongoing engineering challenge. Under well-defined conditions, spontaneous anti-Stokes fluorescence of a dopant material in a host matrix is capable of lowering the host temperature. The fluorescence is conveying away a part of the thermal energy stored in the vibrational oscillations of the host lattice. In particular, applying this principle to the cooling of (solid-state) lasers opens up many potential device applications, especially in the domain of high-power lasers. In this paper, an alternative optical cooling scheme is outlined, leading to the radiative cooling of solid-state lasers. It is based on converting the thermal energy stored in the host into optical energy by means of a stimulated nonlinear process, rather than a spontaneous process. This should lead to better cooling efficiencies and a higher potential of applying the principle for device applications.
机译:基于将热转换成光能的冰箱是一项持续的工程挑战。在确定的条件下,基质中掺杂材料的自发抗斯托克斯荧光能够降低基质温度。荧光正在带走存储在主晶格振动中的一部分热能。特别地,将这一原理应用于(固态)激光器的冷却将打开许多潜在的设备应用,尤其是在高功率激光器领域。在本文中,概述了一种替代的光学冷却方案,从而导致了固态激光器的辐射冷却。它基于通过激发的非线性过程而非自发过程将存储在宿主中的热能转换为光能。这将导致更好的冷却效率和将原理应用于设备的更高潜力。

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