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首页> 外文期刊>Journal of Physics. Condensed Matter >Investigation of lattice dynamical and dielectric properties of MgO under high pressure by means of mid- and far-infrared spectroscopy
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Investigation of lattice dynamical and dielectric properties of MgO under high pressure by means of mid- and far-infrared spectroscopy

机译:中,远红外光谱研究高压下MgO的晶格动力学和介电性能

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We investigate the lattice dynamical and dielectric properties of MgO single crystals and powders by measurements in the mid- and far-infrared frequency region under high pressures, ranging up to 21.7 GPa. The shift of the restrahlen region is used to determine the pressure dependence of the transverse and longitudinal optical modes. The analysis of the refractive index in the mid- and far-infrared region allowed us to obtain the pressure behavior of the static and electronic dielectric constants. The transverse effective charge slowly decreases under high pressure, reflecting the stability of MgO. As a consequence, the pressure dependence of the static and electronic dielectric constants is mainly determined by the pressure dependence of the polar phonon frequency and Penn gap, resulting in a pronounced decrease of the former and a moderate decrease of the latter.
机译:我们通过在高达21.7 GPa的高压下在中红外和远红外频率区域进行测量来研究MgO单晶和粉末的晶格动力学和介电性能。 Restrahlen区域的移动用于确定横向和纵向光学模式的压力依赖性。对中红外和远红外区域的折射率的分析使我们能够获得静态和电子介电常数的压力行为。横向有效电荷在高压下缓慢降低,反映了MgO的稳定性。结果,静态和电子介电常数的压力依赖性主要由极性声子频率和佩恩间隙的压力依赖性决定,导致前者明显降低而后者适度降低。

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