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Role of Anharmonic Interactions for Vibration Density of States in α-Cristobalite

机译:Anharmonic相互作用在α-克里斯橡胶振动密度的作用

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摘要

The vibrational density of states (VDOS) of solids in the low-energy regime controls the thermal and transport properties of materials, such as heat capacity, heat conduction, free energy and entropy. In α-Cristobalite, the low-frequency part of vibration density of states (VDOS) has many common features with the Boson peak in silica glass of matched densities. Recent theoretical work reported that anharmonic phonon–phonon interactions were critical for the low-frequency part of VDOS in α-Cristobalite. Therefore, it is urgent to identify the role of different anharmonic interactions from first principles. In this paper, we focus on the main peak of the low-frequency part of VDOS in α-Cristobalite. Calculated by our own developed codes and first principles, we find that the quartic anharmonic interaction can increase the frequency of the peak, while the cubic anharmonic can reduce the frequency and change the shape of the peak. Meanwhile, the anharmonic interactions are critical for the temperature effect. Therefore, we calculated the temperature-dependent property of the peak. We find that the frequency of the peak is directly proportional to the temperature. The atomic displacement patterns of different temperatures also confirm the above conclusion. All our calculations converged well. Moreover, our basic results agree well with other published results. Finally, we highlight that our codes offer a general and reliable way to calculate the VDOS with temperature.
机译:低能量调节中固体状态(VDO)的振动密度控制了材料的热量和运输性能,例如热容量,导热,自由能和熵。在α-cristobalite中,状态的振动密度(VDOS)的低频部分具有许多常见的特征,匹配密度二氧化硅玻璃中的玻色峰。最近的理论工作报道说,Anharmonic alon-phonon相互作用对于α-cristobalite的VDOS的低频部分至关重要。因此,迫切需要确定不同厌声相互作用的第一原理的作用。在本文中,我们专注于α-Cristobalite中VDOS低频部分的主峰。通过我们自己开发的代码和第一个原则计算,我们发现四际anharmonic相互作用可以增加峰值的频率,而立方体anharmonic可以减少频率并改变峰的形状。同时,anharmonic相互作用对于温度效应至关重要。因此,我们计算了峰的温度依赖性。我们发现峰的频率与温度成正比。不同温度的原子位移模式也证实了上述结论。我们所有的计算都会融合。此外,我们的基本结果与其他公布的结果一致。最后,我们强调了我们的代码提供了一种通过温度计算VDO的一般和可靠的方法。

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