Kavanagh K, Slingerland J K, Dooley S, Kells G
Department of Physics, Faculty of Mathematics and Physics, <a href="https://ror.org/05njb9z20">University of Ljubljana</a>, 1000 Ljubljana, Slovenia.
School of Theoretical Physics, <a href="https://ror.org/051sx6d27">Dublin Institute for Advanced Studies</a>, 10 Burlington Road, Dublin D04 C932, Ireland.
Phys Rev E. 2024 Nov;110(5-1):054102. doi: 10.1103/PhysRevE.110.054102.
Topology in many-body physics usually emerges as a feature of equilibrium quantum states. We show that topological fingerprints can also appear in the relaxation rates of open quantum systems. To demonstrate this we consider one of the simplest models that has two topologically distinct phases in its ground state: the Kitaev chain model for the p-wave superconductor. After introducing dissipation to this model we estimate the Liouvillian gap in both strong and weak dissipative limits. Our results show that a nonzero superconducting pairing opens a Liouvillian gap that remains open in the limit of infinite system size. At strong dissipation this gap is essentially unaffected by the topology of the underlying Hamiltonian ground state. In contrast, when dissipation is weak, the topological phase of the Hamiltonian ground state plays a crucial role in determining the character of the Liouvillian gap. We find, for example, that in the topological phase this gap is completely immune to changes in the chemical potential. On the other hand, in the nontopological phase the Liouvillian gap is suppressed by a large chemical potential.
多体物理中的拓扑通常表现为平衡量子态的一个特征。我们表明,拓扑指纹也可以出现在开放量子系统的弛豫率中。为了证明这一点,我们考虑一个最简单的模型之一,其基态具有两个拓扑不同的相:p波超导体的 Kitaev 链模型。在给这个模型引入耗散后,我们在强耗散和弱耗散极限下估计刘维尔间隙。我们的结果表明,非零的超导配对会打开一个刘维尔间隙,该间隙在无限系统尺寸的极限下仍然存在。在强耗散情况下,这个间隙基本上不受底层哈密顿量基态拓扑的影响。相反,当耗散较弱时,哈密顿量基态的拓扑相对确定刘维尔间隙的性质起着关键作用。例如,我们发现,在拓扑相中,这个间隙完全不受化学势变化的影响。另一方面,在非拓扑相中,刘维尔间隙会被大的化学势抑制。