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Berry curvature and various thermal Hall effects

机译:浆果曲率和各种热霍尔效应

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Applying the approach of semiclassical wave packet dynamics, we study various thermal Hall effects where carriers can be electron, phonon, magnon, etc. A general formula of thermal Hall conductivity is obtained to provide an essential physics for various thermal Hall effects, where the Berry phase effect manifests naturally. All the formulas of electron thermal Hall effect, phonon Hall effect, and magnon Hall effect can be directly reproduced from the general formula. It is also found that the Strěda formula can not be directly applied to the thermal Hall effects, where only the edge magnetization contributes to the Hall effects. Furthermore, we obtain a combined formula for anomalous Hall conductivity, thermal Hall electronic conductivity and thermal Hall conductivity for electron systems, where the Berry curvature is weighted by a different function. Finally, we discuss particle magnetization and its relation to angular momentum of the carrier, change of which could induce a mechanical rotation; and possible experiments for thermal Hall effect associated with a mechanical rotation are also proposed.
机译:应用半经典波包动力学方法,我们研究了载流子可以是电子,声子,磁振子等各种热霍尔效应。获得了热霍尔电导率的通用公式,为各种热霍尔效应提供了基本物理原理,其中贝里相位效应自然显现。电子热霍尔效应,声子霍尔效应和磁振霍尔效应的所有公式都可以直接从通式中得出。还发现,Strěda公式不能直接应用于热霍尔效应,因为仅边缘磁化有助于霍尔效应。此外,我们获得了电子系统的异常霍尔电导率,导热霍尔电导率和导热霍尔电导率的组合公式,其中贝瑞曲率由不同的函数加权。最后,我们讨论了粒子磁化强度及其与载体角动量的关系,其变化会引起机械旋转。还提出了与机械旋转相关的热霍尔效应的可能实验。

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