Many-body Liouvillian dynamics with a non-Hermitian tensor-network kernel polynomial algorithm
Artikel i vetenskaplig tidskrift, 2024

Understanding the dynamics of open quantum many-body systems is a major problem in quantum matter. Specifically, efficiently solving the spectrum of the Liouvillian superoperator governing such dynamics remains a critical open challenge. Here, we put forward a method for solving the many-body Liouvillian spectrum and dynamics based on the non-Hermitian kernel polynomial method and tensor-network techniques. We demonstrate the faithfulness of our method by computing the dynamics of the dephasing quantum compass model with a gradient magnetic field and comparing it with exact results. In particular, we show that our method allows us to characterize the quantum Zeno crossover and the reduction of relaxation rate due to Stark localization in this model. We further demonstrate the ability of our method to go beyond exact results by exploring nearest-neighbor interaction effects on the Liouvillian dynamics, elucidating the interplay between Stark localization and many-body interactions. Our method provides an efficient solution to many-body Liouvillian spectrum and dynamics, establishing a methodology to explore large open quantum many-body systems.

Författare

Guangze Chen

Chalmers, Mikroteknologi och nanovetenskap, Tillämpad kvantfysik

Jose L. Lado

Aalto-Yliopisto

Fei Song

Chinese Academy of Sciences

Physical Review Research

26431564 (ISSN)

Vol. 6 4 043182

Simulating non-Hermitian many-body topological phases with giant atoms (SING-ATOM)

Europeiska kommissionen (EU) (EC/HE/101146565), 2024-08-16 -- 2026-08-15.

Ämneskategorier (SSIF 2025)

Atom- och molekylfysik och optik

Den kondenserade materiens fysik

Annan fysik

DOI

10.1103/PhysRevResearch.6.043182

Mer information

Senast uppdaterat

2025-02-10