Liu Donghao, Shi Junren
International Center for Quantum Materials, School of Physics, Peking University, Beijing 100871, China.
Collaborative Innovation Center of Quantum Matter, Beijing 100871, China.
Phys Rev Lett. 2017 Aug 18;119(7):075301. doi: 10.1103/PhysRevLett.119.075301.
We derive the phonon dynamics of magnetic metals in the presence of strong spin-orbit coupling. We show that both a dissipationless viscosity and a dissipative viscosity arise in the dynamics. While the dissipationless viscosity splits the dispersion of left-handed and right-handed circularly polarized phonons, the dissipative viscosity damps them differently, inducing circular phonon dichroism. The effect offers a new degree of manipulation of phonons, i.e., the control of the phonon polarization. We investigate the effect in Weyl semimetals. We find that there exists strong circular phonon dichroism in Weyl semimetals breaking both the time-reversal and the inversion symmetry, making them potential materials for realizing the acoustic circular polarizer.
我们推导了存在强自旋轨道耦合时磁性金属的声子动力学。我们表明,在动力学中会出现无耗散粘性和耗散粘性。无耗散粘性会分裂左旋和右旋圆偏振声子的色散,而耗散粘性对它们的阻尼方式不同,从而导致圆声子二向色性。这种效应提供了一种对声子进行操控的新维度,即对声子极化的控制。我们研究了外尔半金属中的这种效应。我们发现,在同时破坏时间反演对称性和空间反演对称性的外尔半金属中存在很强的圆声子二向色性,这使其成为实现声学圆偏振器的潜在材料。