首页> 外文期刊>Journal of synchrotron radiation >Path-integral approach to Debye-Waller factors in EXAFS, EELS and XPD for cubic and quartic anharmonic potentials
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Path-integral approach to Debye-Waller factors in EXAFS, EELS and XPD for cubic and quartic anharmonic potentials

机译:EXAFS,EELS和XPD中Debye-Waller因子的三次方和四次非谐性势的路径积分方法

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In this paper thermal effects in extended X-ray absorption fine structure (EXAFS) and X-ray photoelectron diffraction (XPD) due to atomic vibration in cubic and quartic potentials are studied by use of Feynman's path-integral approach. This approach can be applied to strongly anharmonic systems where the cumulant analyses break down. It is closely related to the well known classical approach which is only valid at high temperature. The phase of the thermal factor plays an important role both in EXAFS and XPD analyses for the asymmetric potential with strong anharmonicity. At low temperature the cumulant expansion up to the second order for the thermal damping function agrees well with the self-consistent result, but up to higher orders should be taken into account for the phase function. At high temperature the result from self-consistent calculations shows the characteristic behaviour: the thermal damping function is negative in the high-k region for both strongly and weakly anharmonic systems. The cumulant approximation cannot reproduce this behaviour. For the strongly anharmonic systems the quantum result shows qualitatively different behaviour from the classical approximation at low temperature: the former does not show the negative values even in the high-k region, while the latter shows the phase inversion in the amplitude. [References: 33]
机译:本文利用费曼路径积分方法研究了扩展的X射线吸收精细结构(EXAFS)和X射线光电子衍射(XPD)在立方和四次电势中由于原子振动引起的热效应。这种方法可以应用于累积量分析失败的强非谐波系统。它与仅在高温下有效的众所周知的经典方法密切相关。热因子的相位在EXAFS和XPD分析中都具有重要作用,因为非对称电位具有很强的非谐性。在低温下,热阻尼函数的累积量扩展到二阶与自洽结果非常吻合,但是对于相位函数,应考虑到更高的阶数。在高温下,自洽计算的结果显示出典型的行为:强和弱非谐系统在高k区域的热阻尼函数为负。累积近似不能重现此行为。对于强非调和系统,量子结果显示出与低温下的经典近似在性质上不同的行为:即使在高k区域中,前者也不显示负值,而后者在幅度上显示出相位反转。 [参考:33]

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