Institute for Advanced Study, Tsinghua University, Beijing 100084, China.
Phys Rev Lett. 2019 Oct 25;123(17):170401. doi: 10.1103/PhysRevLett.123.170401.
One of the unique features of non-Hermitian Hamiltonians is the non-Hermitian skin effect, namely, that the eigenstates are exponentially localized at the boundary of the system. For open quantum systems, a short-time evolution can often be well described by the effective non-Hermitian Hamiltonians, while long-time dynamics calls for the Lindblad master equations, in which the Liouvillian superoperators generate time evolution. In this Letter, we find that Liouvillian superoperators can exhibit the non-Hermitian skin effect, and uncover its unexpected physical consequences. It is shown that the non-Hermitian skin effect dramatically shapes the long-time dynamics, such that the damping in a class of open quantum systems is algebraic under periodic boundary conditions but exponential under open boundary conditions. Moreover, the non-Hermitian skin effect and non-Bloch bands cause a chiral damping with a sharp wave front. These phenomena are beyond the effective non-Hermitian Hamiltonians; instead, they belong to the non-Hermitian physics of full-fledged open quantum dynamics.
非厄米哈密顿量的一个独特特征是非厄米skin 效应,即本征态在系统边界处呈指数局域化。对于开放量子系统,短时间演化通常可以用有效的非厄米哈密顿量很好地描述,而长时间动力学则需要 Lindblad 主方程,其中 Liouvillian 超算符产生时间演化。在这封信中,我们发现 Liouvillian 超算符可以表现出非厄米 skin 效应,并揭示其意想不到的物理后果。结果表明,非厄米 skin 效应极大地塑造了长时间动力学,使得一类开放量子系统在周期性边界条件下的阻尼呈指数衰减,而在开放边界条件下则呈指数衰减。此外,非厄米 skin 效应和非 Bloch 带导致具有尖锐波前的手性阻尼。这些现象超出了有效非厄米哈密顿量的范围;相反,它们属于完整开放量子动力学的非厄米物理。