Magnetic field effects in optical and far IR spectra of LiTmF4 crystals

R. Abdulsabirov, A. A. Kazantsev, S. Korableva, B. Malkin, S. Nikitin, A. Stolov, M. Tagirov, D. Tayurskii, J. van Tol
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引用次数: 2

Abstract

Splitting of the first excited (Gamma) 134(3H6) doublet state of Tm3+ ions in the LiTmF4 crystal in external magnetic fields up to 11 T has been studied using measurements of luminescence and far RI absorption spectra at low temperatures. In the magnetic field perpendicular to the S4-symmetry axis of the crystal lattice, the splitting of the non-Kramers doublet is caused by the joint action of the nonlinear Zeeman effect and the piezo spectroscopic effect related to parastriction. Experimental dependences of the doublet splitting on the magnetic field strength and direction are in good correspondence with the theoretical estimations obtained in the framework of the semi phenomenological crystal field model. It is shown that spectroscopic data present direct information on the forced magnetostriction in the basal plane of uniaxial Van Vleck paramagnets that contain non- Kramers rare earth ions.
磁场对LiTmF4晶体光学和远红外光谱的影响
利用低温下的发光和远红外吸收光谱测量,研究了在11t外磁场下Tm3+离子的第一激发(Gamma) 134(3H6)双态的分裂。在垂直于晶格s4对称轴的磁场中,非线性塞曼效应和与参缩有关的压电光谱效应共同作用导致了非克莱默双重态的分裂。实验结果表明,在半现象学晶体场模型框架下,双重态分裂对磁场强度和方向的依赖关系与理论估计相吻合。结果表明,光谱数据提供了含有非克莱默稀土离子的单轴范弗利克顺磁体基面上的强制磁致伸缩的直接信息。
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