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Thermo-Optical and Magneto-Optical Characteristics of Terbium Scandium Aluminum Garnet Crystals

机译:Scan铝石榴石Ter晶体的热光和磁光特性

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Magnetoactive materials are of considerable current interest, primarily for applications in nonreciprocal Faraday devices used for polarization control, optical isolation, optical switching, and modulation. The need for such devices is growing with laser power enhancement. They reduce risk of self-excitation of the amplifiers and optical elements damage and are a handy tool for organizing multipass schemes. However, at high average power of radiation these devices are subject to thermally induced effects that impair their operability and lead to increased losses and to the formation of phase distortions in the transmitted radiation. One of the methods to reduce thermally induced effects is to use in Faraday devices new magnetoactive materials with better thermo-optical properties. This paper is devoted to the study of thermo-optical and magneto-optical characteristics of a unique magnetoactive material—a terbium scandium aluminum garnet (TSAG) crystal. The TSAG has an extraordinary value of optical anisotropy parameter , a Verdet constant 25% higher than the traditionally used terbium gallium garnet crystal and the highest magneto-optical figure-of-merit known in magnetoactive materials at the moment.
机译:磁活性材料目前具有相当大的兴趣,主要是用于不可逆的法拉第装置中的应用,该装置用于偏振控制,光隔离,光切换和调制。随着激光功率的增强,对此类设备的需求也在增长。它们降低了放大器自激和光学元件损坏的风险,并且是组织多通道方案的便捷工具。但是,在高平均辐射功率下,这些设备会受到热效应的影响,从而削弱其可操作性并导致损耗增加,并在透射的辐射中形成相位失真。减少热感应效应的方法之一是在法拉第装置中使用具有更好的热光特性的新型磁活性材料。本文致力于研究一种独特的磁活性材料-scan铝石榴石(TSAG)晶体的热光和磁光特性。 TSAG具有非同寻常的光学各向异性参数值,其Verdet常数比传统使用的ter镓石榴石晶体高25%,并且是目前磁活性材料中已知的最高磁光学品质因数。

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