Bosonic Peierls state emerging from the one-dimensional Ising-Kondo interaction

Fuente: arXiv
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Autori principali: Fan, Jingtao, Zhou, Xiaofan, Jia, Suotang
Natura: Preprint
Pubblicazione: 2024
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author Fan, Jingtao
Zhou, Xiaofan
Jia, Suotang
author_facet Fan, Jingtao
Zhou, Xiaofan
Jia, Suotang
contents As an important effect induced by the particle-lattice interaction, the Peierls transition, a hot topic in condensed matter physics, is usually believed to occur in the one-dimensional fermionic systems. We here study a bosonic version of the one-dimensional Ising-Kondo lattice model, which describes itinerant bosons interact with the localized magnetic moments via only longitudinal Kondo exchange.\ We show that, by means of perturbation analysis and numerical density-matrix renormalization group method, a bosonic analog of the Peierls state can occur in proper parameters regimes. The Peierls state here is characterized by the formation of a long-range spin-density-wave order, the periodicity of which is set by the density of the itinerant bosons. The ground-state phase diagram is mapped out by extrapolating the finite-size results to thermodynamic limit. Apart from the bosonic Peierls state, we also reveal the presence of some other magnetic orders, including a paramagnetic phase and a ferromagnetic phase. We finally propose a possible experimental scheme with ultracold atoms in optical lattices. Our results broaden the frontiers of the current understanding of the one-dimensional particle-lattice interaction system.
format Preprint
id arxiv_https___arxiv_org_abs_2411_16357
institution arXiv
publishDate 2024
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spellingShingle Bosonic Peierls state emerging from the one-dimensional Ising-Kondo interaction
Fan, Jingtao
Zhou, Xiaofan
Jia, Suotang
Quantum Gases
Quantum Physics
As an important effect induced by the particle-lattice interaction, the Peierls transition, a hot topic in condensed matter physics, is usually believed to occur in the one-dimensional fermionic systems. We here study a bosonic version of the one-dimensional Ising-Kondo lattice model, which describes itinerant bosons interact with the localized magnetic moments via only longitudinal Kondo exchange.\ We show that, by means of perturbation analysis and numerical density-matrix renormalization group method, a bosonic analog of the Peierls state can occur in proper parameters regimes. The Peierls state here is characterized by the formation of a long-range spin-density-wave order, the periodicity of which is set by the density of the itinerant bosons. The ground-state phase diagram is mapped out by extrapolating the finite-size results to thermodynamic limit. Apart from the bosonic Peierls state, we also reveal the presence of some other magnetic orders, including a paramagnetic phase and a ferromagnetic phase. We finally propose a possible experimental scheme with ultracold atoms in optical lattices. Our results broaden the frontiers of the current understanding of the one-dimensional particle-lattice interaction system.
title Bosonic Peierls state emerging from the one-dimensional Ising-Kondo interaction
topic Quantum Gases
Quantum Physics
url https://arxiv.org/abs/2411.16357