English

Manipulating the Relaxation Time of Boundary-Dissipative Systems through Bond Dissipation

Disordered Systems and Neural Networks 2024-09-16 v4 Other Condensed Matter Quantum Physics

Abstract

Relaxation time plays a crucial role in describing the relaxation processes of quantum systems. We study the effect of a type of bond dissipation on the relaxation time of boundary dissipative systems and find that it can change the scaling of the relaxation time TcLzT_c\sim L^{z} from z=3z=3 to a value significantly less than 33. We further reveal that the reason such bond dissipation can significantly reduce the relaxation time is that it can selectively target specific states. For Anderson localized systems, the scaling behavior of the relaxation time changes from an exponential form to a power-law form as the system size varies. This is because the bond dissipation we consider can not only select specific states but also disrupt the localization properties. Our work reveals that in open systems, one type of dissipation can be used to regulate the effects produced by another type of dissipation.

Keywords

Cite

@article{arxiv.2406.04183,
  title  = {Manipulating the Relaxation Time of Boundary-Dissipative Systems through Bond Dissipation},
  author = {Yi Peng and Chao Yang and Yucheng Wang},
  journal= {arXiv preprint arXiv:2406.04183},
  year   = {2024}
}