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Autores principales: Okazaki, Koichi, Okumura, Shun, Takayoshi, Shintaro, Oka, Takashi
Formato: Preprint
Publicado: 2024
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Acceso en línea:https://arxiv.org/abs/2409.09578
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author Okazaki, Koichi
Okumura, Shun
Takayoshi, Shintaro
Oka, Takashi
author_facet Okazaki, Koichi
Okumura, Shun
Takayoshi, Shintaro
Oka, Takashi
contents We theoretically study nonlinear processes driven by a DC spin-electric field in the antiferromagnetic spin-1 Heisenberg model starting from the ground state in the Haldane phase. The DC spin-electric field generates finite spin current and accumulation since the symmetry protected topological order is destroyed by the field. We find two microscopic mechanisms responsible for the breakdown and a crossover between them: In weak fields, tripron-antitripron pair creation occurs through the tunneling mechanism, and in strong fields, the system is described by an effective Hamiltonian breaking the protecting symmetries. We analyze the numerically obtained results in terms of the Dykhne--Davis--Pechukas theory and Floquet theory, verifying the universal picture of the many-body Keldysh crossover in the DC-driven quantum spin systems.
format Preprint
id arxiv_https___arxiv_org_abs_2409_09578
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Many-body Keldysh Crossover in the DC-driven Haldane Spin Chain
Okazaki, Koichi
Okumura, Shun
Takayoshi, Shintaro
Oka, Takashi
Strongly Correlated Electrons
We theoretically study nonlinear processes driven by a DC spin-electric field in the antiferromagnetic spin-1 Heisenberg model starting from the ground state in the Haldane phase. The DC spin-electric field generates finite spin current and accumulation since the symmetry protected topological order is destroyed by the field. We find two microscopic mechanisms responsible for the breakdown and a crossover between them: In weak fields, tripron-antitripron pair creation occurs through the tunneling mechanism, and in strong fields, the system is described by an effective Hamiltonian breaking the protecting symmetries. We analyze the numerically obtained results in terms of the Dykhne--Davis--Pechukas theory and Floquet theory, verifying the universal picture of the many-body Keldysh crossover in the DC-driven quantum spin systems.
title Many-body Keldysh Crossover in the DC-driven Haldane Spin Chain
topic Strongly Correlated Electrons
url https://arxiv.org/abs/2409.09578