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首页> 外文期刊>International Journal of Modern Physics, B. Condensed Matter Physics, Statistical Physics, Applied Physics >High-pressure induced structural phase transition and elastic properties of diluted magnetic semiconductors Zn1-xMnxSe
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High-pressure induced structural phase transition and elastic properties of diluted magnetic semiconductors Zn1-xMnxSe

机译:稀磁半导体Zn1-xMnxSe的高压诱导结构相变和弹性

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摘要

An effective interionic interaction potential is developed to study the pressure-induced phase transitions from zinc blende (133) to rock salt (131) structure in diluted magnetic semiconductors Zn1-xMnxSe (x = 0.08 and 0.15). As a first step, the elastic constants, including the long-range Coulomb, van der Waals (vdW) interaction and the short-range repulsive interaction up to second-neighbor ions within the Hafemeister and Flygare approach, are derived. Assuming that both the ions are polarizable, the Slater-Kirkwood variational method is employed to estimate the vdW coefficients. The estimated values of the phase transition pressure (P-t) increase with Mn concentration. The vast volume discontinuity in the pressure volume phase diagram identifies the structural phase transition from zinc blende to rock salt structure. The variation of second-order elastic constants with pressure resembles that observed in some binary semiconductors. It is noticed that the vdW interaction is effective in obtaining the thermodynamical parameters such as Debye temperature, Gruneisen parameter, and thermal expansion coefficient. However, the inconsistency in the value of pressure derivative of the theoretical and experimental value of C-44 is attributed to the fact that we have derived the expressions by assuming that the overlap repulsion is significant only up to nearest neighbors, as well as neglecting thermal effects.
机译:开发了一种有效的离子相互作用势来研究稀磁半导体Zn1-xMnxSe(x = 0.08和0.15)中从锌共混物(133)到岩盐(131)结构的压力诱导的相变。第一步,在Hafemeister和Flygare方法中,得出包括常数库仑,范德华(vdW)相互作用和短程排斥相互作用直至第二个相邻离子的弹性常数。假设两个离子都是可极化的,则采用Slater-Kirkwood变分法估算vdW系数。相变压力(P-t)的估计值随着Mn浓度的增加而增加。压力体积相图中巨大的体积不连续性表明了从锌共混物到岩盐结构的结构相变。二阶弹性常数随压力的变化类似于某些二元半导体中观察到的变化。注意到,vdW相互作用在获得热力学参数如德拜温度,格鲁内森参数和热膨胀系数方面是有效的。但是,C-44的理论值和实验值的压力导数值不一致是由于我们推论得出这样的表达式,即假设交叠斥力仅在最近邻附近才有效,并且忽略了热效果。

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