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Electron paramagnetic resonance spectra of Er3+ in the monoclinic KY(WO4)(2) crystal

机译:ER3 +电子顺磁共振谱在单斜斜孔(WO4)(2)晶体中

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Electron paramagnetic resonance (EPR) studies of Er3+ of single-crystal KY(WO4)(2) have been carried out at X-band frequencies over a temperature range from 4.2 to 300 K. The main x- and z-axes of the g-tensor in the ac plane do not coincide with the crystallographic a- and c-axes, while the y- and b-axes are parallel. The EPR spectrum is characterized by a strong anisotropy of the g-factors (g(z) = 13.25 +/- 0.05, g(x) = 0 +/- 0.1, g(y) = 3.378 +/- 0.005) and of the hyperfine interaction parameters (A(z) = -469 +/- 3, A(x) = 0 +/- 3.5, A(y) = -120.75 +/- 0.8 in 10(-4) cm(-1)). The temperature dependence of the g-factors is caused by an anharmonic part of the spin-phonon Hamiltonian as well as by a rotational contribution to this Hamiltonian. A spin-lattice relaxation is shown to result from two Orbach processes through the first and second excited levels of an electronic spectrum. [References: 19]
机译:ER3 +单晶KY(WO4)(2)的电子顺磁共振(EPR)研究已经在4.2至300k的温度范围内的X波段频率下进行.G的主X和Z轴 - 交流机中的传感器不与晶体A和C轴重合,而Y和B轴是平行的。 EPR光谱的特征在于G型因子的强四个各向异性(G(Z)= 13.25 +/- 0.05,G(X)= 0 +/- 0.1,G(Y)= 3.378 +/- 0.005)和 高血换相互作用参数(a(z)= -469 +/- 3,a(x)= 0 +/- 3.5,a(y)= -120.75 +/- 0.8,10(-4)cm(-1) )。 G型因子的温度依赖性是由旋转声子汉密尔顿的无谐波部分引起的,以及对这个哈密顿的旋转贡献。 示出了通过电子谱的第一和第二激发水平的两种奥巴赫工艺产生旋转晶格弛豫。 [参考:19]

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