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Peculiar temperature dependence of dynamical sound speed in liquid Se50Te50 by inelastic x-ray scattering

机译:无型X射线散射液体SE50Te50中动力学速度的特殊温度依赖性

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摘要

Inelastic x-ray scattering (IXS) measurements were carried out on liquid Se50Te50 at temperatures up to 1323 K to investigate how the atomic dynamics changes with temperature through the semiconductor-metal transition. The acoustic mode was clearly observed in the dynamic structure factor and its energy was determined using a damped harmonic oscillator model. The dynamical sound speed obtained by IXS for Q <= 2 nm(-1) was found to behave similarly to the temperature dependence of ultrasonic sound velocity with a minimum near the semiconductor metal transition. The results can be explained by taking liquid Se50Te50 to be an inhomogeneous liquid consisting of metallic and semiconducting domains whose size is approximately 3 nm. The relaxation time obtained from frequency dependence of the dynamical sound speed was on a picosecond time scale.
机译:在高达1323k的温度下在液体SE50Te050上进行无弹性X射线散射(IXS)测量,以研究原子动力学如何通过半导体 - 金属转变改变温度。 在动态结构因子中清楚地观察到声学模式,并且使用阻尼谐振子模型确定其能量。 发现由Q <= 2nm(-1)获得的IXS获得的动态声速与超声波速度的温度依赖性类似地表现出与半导体金属转换附近的最小值相似。 结果可以通过将液体SE50Te50取向是由金属和半导体结构域组成的不均匀液体来解释,其尺寸约为3nm。 从动态声速的频率依赖性获得的弛豫时间在皮秒上尺度。

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