论文标题
旋转和旋转电流 - 从基本面到最近的进展
Spin and spin current -- From fundamentals to recent progress
论文作者
论文摘要
随着自旋科学和自旋三位型研究的进展,电子旋转(即自旋电流)的流动引起了人们的兴趣。使用自旋电流的概念连续解释了新现象和电子状态。此外,由于许多常规知名的自旋形成现象基于旋转电流而井井有条,因此在广泛的凝结物理物理学中,它迅速被认为是必不可少的概念。在本文中,我们关注自旋,自旋电流及其相关现象的最新发展,其中自旋角动量和不同形式的角动量之间的转化起着至关重要的作用。从旋转电流介绍开始,我们首先讨论由自旋交换耦合驱动的自旋现象的最新进展:自旋泵送,拓扑厅扭矩和新兴电感器。然后,我们将讨论扩展到与热量,晶格振动以及电荷电流以及有关自旋Seebeck和Peltier效应的最新进度和观点的旋转的相互作用/互连。接下来,我们回顾机械运动与电子/核自旋之间的相互作用,并论证了Barnett场与旋转多普勒效应之间的差异。我们表明,巴内特效应揭示了角动量补偿温度,在该温度下,在该温度下将净角动量淬灭铁磁铁。
Along with the progress of spin science and spintronics research, the flow of electron spins, (i.e. spin current), has attracted interest. New phenomena and electronic states were explained in succession using the concept of spin current. Moreover, as many of the conventionally known spintronics phenomena became well organized based on spin current, it has rapidly been recognized as an essential concept in a wide range of condensed matter physics. In this article, we focus on recent developments in the physics of spin, spin current, and their related phenomena, where the conversion between spin angular momentum and different forms of angular momentum plays an essential role. Starting with an introduction to spin current, we first discuss the recent progress in spintronic phenomena driven by spin-exchange coupling: spin pumping, topological Hall torque, and emergent inductor. We, then, extend our discussion to the interaction/interconversion of spins with heat, lattice vibrations, and charge current and address recent progress and perspectives on the spin Seebeck and Peltier effects. Next, we review the interaction between mechanical motion and electron/nuclear spins and argue the difference between the Barnett field and rotational Doppler effect. We show that the Barnett effect reveals the angular momentum compensation temperature, at which the net angular momentum is quenched in ferrimagnets.