Limits of the non-Hermitian description of decay models

Fuente: arXiv
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Main Authors: Monkman, Kyle, Berciu, Mona
Format: Preprint
Published: 2024
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author Monkman, Kyle
Berciu, Mona
author_facet Monkman, Kyle
Berciu, Mona
contents We present a general proof that non-Hermitian dynamics and Lindblad dynamics with only decay terms are equivalent in the highest particle subspace. We then propose an unbiased method to determine if a system's dynamics in the highest-particle subspace is non-Hermitian. We exemplify this for a simple two-site decay system connected to two baths, and find that the exact solution is well approximated by non-Hermitian dynamics only in the weak-coupling and in the singular-coupling limits, where a Lindbladian description was already known to be accurate. The fact that an accurate non-Hermitian description is so limited, even for such a simple system, raises doubts about how valid such descriptions are for more complicated systems away from these asymptotic limits. Finally, we prove that for models with a nondegenerate system Hamiltonian, exceptional points cannot occur in the weak-coupling limit. This result is relevant for the design of experiments that aim to identify such exceptional points.
format Preprint
id arxiv_https___arxiv_org_abs_2411_14599
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Limits of the non-Hermitian description of decay models
Monkman, Kyle
Berciu, Mona
Quantum Physics
Statistical Mechanics
We present a general proof that non-Hermitian dynamics and Lindblad dynamics with only decay terms are equivalent in the highest particle subspace. We then propose an unbiased method to determine if a system's dynamics in the highest-particle subspace is non-Hermitian. We exemplify this for a simple two-site decay system connected to two baths, and find that the exact solution is well approximated by non-Hermitian dynamics only in the weak-coupling and in the singular-coupling limits, where a Lindbladian description was already known to be accurate. The fact that an accurate non-Hermitian description is so limited, even for such a simple system, raises doubts about how valid such descriptions are for more complicated systems away from these asymptotic limits. Finally, we prove that for models with a nondegenerate system Hamiltonian, exceptional points cannot occur in the weak-coupling limit. This result is relevant for the design of experiments that aim to identify such exceptional points.
title Limits of the non-Hermitian description of decay models
topic Quantum Physics
Statistical Mechanics
url https://arxiv.org/abs/2411.14599