Temperature dependence of Faraday rotation in microcavity 1D-MPC with compensation temperature

V. N. Berzhansk, A. Karavainikov, T. Mikhailova, A. Prokopov, A. Shaposhnikov, M. F. Kharchenko, Lm Lukienko, O. Miloslavskaya, Y. Kharchenko
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Abstract

The low-temperature behavior of optical and magneto-optical properties of microcavity 1D-MPCs with different composition of substituted YIG films as defect layers were investigated. It is found that optical transmittance of 1D-MPCs was temperature independent and 1D-MPC with Bi, Gd, and Al-substituted YIG films had compensation temperature of Faraday rotation ≈ 30 K.
补偿温度下微腔1D-MPC中法拉第旋转的温度依赖性
研究了不同取代YIG薄膜作为缺陷层的微腔1D-MPCs的光学和磁光性能的低温行为。结果表明,1D-MPC的光学透过率与温度无关,且以Bi、Gd、al取代的YIG薄膜的补偿温度为法拉第旋转≈30 K。
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