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CRITICALLY ASSESSING THE APPLICATION OF QUANTUM CORRECTIONS TO CLASSICAL THERMAL CONDUCTIVITY PREDICTIONS

机译:关键地评估量子校正在经典热导率预测中的应用

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Quantum corrections can be used to map the thermal conductivity predicted in a classical framework [e.g., a molecular dynamics (MD) simulation] to a corresponding value in a quantum system. This procedure is accomplished by equating the total energies and energy fluxes of the classical and quantum systems. The validity of these corrections is questionable because they are introduced in an ad hoc manner and are not derived from first principles.In this work, the validity of these quantum corrections is examined by comparing the thermal conductivity of Stillinger-Weber silicon calculated using a full quantum mechanical treatment to a quantum-corrected value predicted from a classical framework between temperatures of 10 K and 1000 K. The quantum and classical predictions are obtained using anharmonic lattice dynamics calculations. We find discrepancies between the quantum-corrected predictions and the quantum predictions obtained directly. We investigate the causes of these discrepancies and from our findings, conclude that quantum thermal conductivities cannot be predicted by applying simple corrections to the values obtained from a purely classical framework.
机译:量子校正可用于映射经典框架中预测的导热率[例如,分子动力学(MD)仿真]到量子系统中的相应值。通过等同于经典和量子系统的总能量和能量通量来实现该过程。这些更正的有效性是值得怀疑的,因为它们以临时方式引入,并且不是从第一个原则衍生的。 在这项工作中,通过将使用全量子机械处理计算的Sentser-Weber硅的导热率与从10k和1000k的温度之间的经典框架预测的量子校正值进行比较来检查这些量子校正的有效性。该使用Anharmonic格子动力学计算获得量子和经典预测。我们在直接获得的量子校正的预测和量子预测之间找到差异。我们调查这些差异和从我们的发现的原因,得出结论,通过对从纯粹经典框架获得的值应用简单的校正,不能预测量子热传导。

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