电子声子流体动力学

Xiao-Li Huang, A. Lucas
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引用次数: 23

摘要

我们发展了电子与各向同性声子耦合的各向同性费米液体的流体力学理论,假设umklapp过程可以忽略。在低温下,流体近似为伽利略不变量;在高温下,流体几乎是相对论性的;在中等温度下,三维系统中存在7种具有非常规热力学性质和流体动力输运系数的附加温度区。我们预测了电子-声子流体在非相干输运系数、剪切和霍尔粘度以及等离子体色散关系中的定性特征。我们的理论可能与许多量子材料有关,其中强电子-声子散射已被提出作为流体动力学体系的基础,包括$\ mathm {WTe}_2$, $\ mathm {WP}_2$和$\ mathm {PtSn}_4$。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Electron-phonon hydrodynamics
We develop the theory of hydrodynamics of an isotropic Fermi liquid of electrons coupled to isotropic acoustic phonons, assuming that umklapp processes may be neglected. At low temperatures, the fluid is approximately Galilean invariant; at high temperatures, the fluid is nearly relativistic; at intermediate temperatures, there are seven additional temperature regimes with unconventional thermodynamic properties and hydrodynamic transport coefficients in a three-dimensional system. We predict qualitative signatures of electron-phonon fluids in incoherent transport coefficients, shear and Hall viscosity, and plasmon dispersion relations. Our theory may be relevant for numerous quantum materials where strong electron-phonon scattering has been proposed to underlie a hydrodynamic regime, including $\mathrm{WTe}_2$, $\mathrm{WP}_2$, and $\mathrm{PtSn}_4$.
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