Near-zero thermal expansion diamagnetic as a magneto-optical material for Faraday isolators for high power laser radiation

IF 5.3 2区 材料科学 Q2 MATERIALS SCIENCE, MULTIDISCIPLINARY Scripta Materialia Pub Date : 2024-09-05 DOI:10.1016/j.scriptamat.2024.116354
Ilya Snetkov , Xingxing Jiang , Zheshuai Lin
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Abstract

The optical transmission, the wavelength and temperature dependence of the Verdet constant as well as the thermally induced depolarization in a Zn4B6O13 crystal were investigated. The analytical dependence of the Verdet constant on wavelength and temperature, which describes well the experimental data in the 240–1100 nm range, was obtained. The small coefficient of linear expansion and its isotropy significantly suppressed thermally induced depolarization associated with thermally induced linear birefringence caused by the photo-elastic effect, while the diamagnetic nature of the material ensured the absence of thermally induced depolarization associated with the temperature dependence of the Verdet constant. The results revealed that Zn4B6O13 is highly suitable for the wavelength range of 248–350 nm and can be used as a magneto-optical material for an optical isolator for high-average-power UV lasers.

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用于高功率激光辐射法拉第隔离器的近零热膨胀二元磁性磁光材料
研究了 Zn4B6O13 晶体的光学透射率、Verdet 常数的波长和温度依赖性以及热诱导去极化。得到了 Verdet 常数对波长和温度的分析依赖关系,很好地描述了 240-1100 纳米范围内的实验数据。小的线膨胀系数及其各向同性显著抑制了与光弹性效应引起的热诱导线性双折射相关的热诱导去极化,而材料的二磁性则确保了不存在与 Verdet 常数的温度依赖性相关的热诱导去极化。研究结果表明,Zn4B6O13 非常适用于 248-350 纳米波长范围,可用作高平均功率紫外激光器光隔离器的磁光材料。
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来源期刊
Scripta Materialia
Scripta Materialia 工程技术-材料科学:综合
CiteScore
11.40
自引率
5.00%
发文量
581
审稿时长
34 days
期刊介绍: Scripta Materialia is a LETTERS journal of Acta Materialia, providing a forum for the rapid publication of short communications on the relationship between the structure and the properties of inorganic materials. The emphasis is on originality rather than incremental research. Short reports on the development of materials with novel or substantially improved properties are also welcomed. Emphasis is on either the functional or mechanical behavior of metals, ceramics and semiconductors at all length scales.
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