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氟化铽钾晶体的费尔德常数与波长和温度的函数关系。

Verdet constant of potassium terbium fluoride crystal as a function of wavelength and temperature.

作者信息

Vojna David, Duda Martin, Yasuhara Ryo, Slezák Ondřej, Schlichting Wolfgang, Stevens Kevin, Chen Hengjun, Lucianetti Antonio, Mocek Tomáš

出版信息

Opt Lett. 2020 Apr 1;45(7):1683-1686. doi: 10.1364/OL.387911.

Abstract

Potassium terbium fluoride (KTF) crystal is a promising magneto-active material for creating multi-kilowatt average-power Faraday isolators operating at the visible and near-infrared wavelengths. Nevertheless, the key material's parameter needed for the design of any Faraday isolator-the Verdet constant, has not been comprehensively investigated yet. In this Letter, we report on measurement of the Verdet constant of the KTF crystal for wavelengths between 600 and 1500 nm and for temperatures ranging from 15 to 295 K. A suitable model for the Verdet constant as a function of wavelength and temperature has been developed and may be conveniently used for optimal design of KTF-based high-average-power Faraday isolators.

摘要

氟化铽钾(KTF)晶体是一种很有前景的磁活性材料,可用于制造在可见光和近红外波长下运行的多千瓦平均功率法拉第隔离器。然而,设计任何法拉第隔离器所需的关键材料参数——费尔德常数,尚未得到全面研究。在本信函中,我们报告了对KTF晶体在600至1500纳米波长以及15至295开尔文温度范围内费尔德常数的测量结果。已开发出一个将费尔德常数表示为波长和温度函数的合适模型,该模型可方便地用于基于KTF的高平均功率法拉第隔离器的优化设计。

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