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Interpreting the Terahertz Spectrum of Complex Materials: The Unique Contribution of the Bayesian Analysis

机译:解释复杂材料的太赫兹光谱:贝叶斯分析的独特贡献

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摘要

In the last few decades, experimental studies of the terahertz spectrum of density fluctuations have considerably improved our knowledge of the mesoscopic dynamics of disordered materials, which also have imposed new demands on the data modelling and interpretation. Indeed, lineshape analyses are no longer limited to the phenomenological observation of inelastic features, as in the pioneering stage of Neutron or X-ray spectroscopy, rather aiming at the extraction from their shape of physically relevant quantities, as sound velocity and damping, relaxation times, or other transport coefficients. In this effort, researchers need to face both inherent and practical obstacles, respectively stemming from the highly damped nature of terahertz modes and the limited energy resolution, accessible kinematic region and statistical accuracy of the typical experimental outcome. To properly address these challenges, a global reconsideration of the lineshape modelling and the enforcement of evidence-based probabilistic inference is becoming crucial. Particularly compelling is the possibility of implementing Bayesian inference methods, which we illustrated here through an in-depth discussion of some results recently obtained in the analysis of Neutron and X-ray scattering results.
机译:在过去的几十年中,对密度波动的太赫兹光谱进行的实验研究大大提高了我们对无序材料介观动力学的认识,这也对数据建模和解释提出了新的要求。实际上,线形分析不再局限于非弹性特征的现象学观察,如在中子或X射线光谱学的开创阶段,而是旨在从其物理相关量的形状中提取出声速和阻尼,弛豫时间,或其他传输系数。在这项工作中,研究人员需要面对固有和实际的障碍,分别是由于太赫兹模式的高度阻尼性以及有限的能量分辨率,可到达的运动区域和典型实验结果的统计准确性所致。为了正确应对这些挑战,对线形建模和基于证据的概率推理的全球重新考虑正变得至关重要。特别令人信服的是实现贝叶斯推理方法的可能性,我们在这里通过对最近在中子和X射线散射结果分析中获得的一些结果的深入讨论来说明这一点。

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