论文标题

时空晶体中电子的半经典动力学:磁化,极化和电流响应

Semiclassical dynamics of electrons in space-time crystal: Magnetization, polarization, and current response

论文作者

Gao, Qiang, Niu, Qian

论文摘要

时空晶体定义为具有空间周期性和时间周期性的量子机械系统。这样的系统可以通过Floquet-Bloch(FB)理论描述。我们首先通过通过FB波函数的叠加来构造波动行动来制定半经典理论,并得出受到缓慢变化的外部磁场的FB电子运动方程(不要与快速变化的floquet驱动器混淆),揭示了与普通的斑点电子相似的行为,但在浮雕上进行了变化。具体而言,由于波包的自我旋转,我们研究了局部磁矩,这是对K空间中浆果曲率的总磁化的贡献以及完全占据的FB带的极化。基于半经典理论,我们还可以在这种持续保存的系统中显示能量流的指纹。然后,我们讨论连接到热浴的FB系统的密度矩阵,这使我们能够研究涉及非相互作用极限的许多电子的数量。作为应用,我们计算出斜时空金属中的固有电流响应,显示了FB系统的非平衡性质。当前的响应也可以与大声倾角有关。总体而言,我们开发了一种系统的方法来研究时空晶体,并提供了一种有力的工具,可以探索具有耦合空间和时间的外来系统的电子特性。

A space-time crystal is defined as a quantum mechanical system with both spatial and temporal periodicity. Such a system can be described by the Floquet-Bloch (FB) theory. We first formulate a semiclassical theory by constructing a wave-packet through the superposition of the FB wave functions and derive the equations of motion of FB electrons subjected to slowly varying external fields (not to be confused with the fast-changing Floquet drive), revealing behaviors similar to ordinary Bloch electrons but with quantities modified in the Floquet context. Specifically, we study local magnetic moment due to the self-rotation of the wave-packet, a contribution to total magnetization from the Berry curvature in k-space, and the polarization of a fully occupied FB band. Based on the semiclassical theory, we can also show the fingerprint of the energy flow in such an energy-non-conserved system. We then discuss the density matrix of a FB system attached to a thermal bath, which allows us to investigate quantities involving many electrons in the non-interacting limit. As an application, we calculate the intrinsic current response in an oblique spacetime metal showing the non-equilibrium nature of the FB system. The current response can also be related to the acoustoelectric effect. Overall, we develop a systematic approach for studying space-time crystals and provide a powerful tool to explore the electronic properties of this exotic system with coupled space and time.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源