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Kinetics of electron cooling in metal films at low temperatures and revision of the two-temperature model

机译:低温下金属薄膜电子冷却动力学和两温模型的修订

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摘要

The two-temperature model (2TM) introduced by Kaganov, Lifshitz, and Tanatarov is widely used to describe the energy relaxation in the electron-phonon system of a metallic film. At the same time, the accuracy of the description of the electron-phonon system in terms of the 2TM, i.e. on the basis of the electron and phonon temperatures, has not been considered in detail until now. In this paper we present a microscopic theory of cooling of instantly heated electrons in metallic films. In framework of this theory the main features of electron cooling in thick and thin films were found, and an analysis of the accuracy of the 2TM in the low-temperature region was carried out. We consider a more accurate three-temperature model, which (in contrast to the 2TM) explicitly takes into account phonons with angles of incidence exceeding the angle of total internal reflection. The contribution of these phonons to the kinetics of electron relaxation can be significant if the sound velocities in the film and the substrate are quite different.
机译:Kaganov,Lifshitz和Tanatarov引入的两温模型(2TM)广泛用于描述金属膜的电子 - 声子系统中的能量弛豫。同时,在2TM的方面,即在电子和声调温度的基础上,尚未详细考虑电子声波系统的准确性,直到现在。在本文中,我们在金属薄膜中介绍了冷却瞬间加热电子的微观理论。在该理论的框架中,发现了厚薄膜的电子冷却的主要特征,进行了低温区域中2Tm的精度的分析。我们考虑一种更准确的三温模型,该模型(与2TM相比)明确地考虑了具有超过全内反射角的发生率的角声。如果薄膜中的声速和基板的声速相当不同,则这些声子对电子松弛动力学的贡献可能是显着的。

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