Photo-induced charge, spin, and orbital order in the two-orbital extended Hubbard model

Fuente: arXiv
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Main Authors: Ray, Sujay, Werner, Philipp
Format: Preprint
Published: 2024
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_version_ 1866910787500507136
author Ray, Sujay
Werner, Philipp
author_facet Ray, Sujay
Werner, Philipp
contents Nonequilibrium control of electronically ordered hidden phases may lead to the development of ultrafast switches and memory devices. In this study, we demonstrate tunable hidden orders in the photo-doped two-orbital extended Hubbard model. Using steady-state nonequilibrium dynamical mean field theory, we clarify the coexistence and interplay of nonthermal charge, spin, and orbital order. The hidden state at low effective temperature and sufficiently high photo-doping is reminiscent of Kugel-Khomskii order in the two-orbital Hubbard model at $\frac{1}{4}$ and $\frac{3}{4}$ filling, but it emerges out of a nonequilibrium charge ordered state and exhibits a different magnetic structure. A low-energy effective Hamiltonian is used to analyze the exchange processes which stabilize the nonthermal order.
format Preprint
id arxiv_https___arxiv_org_abs_2408_06514
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Photo-induced charge, spin, and orbital order in the two-orbital extended Hubbard model
Ray, Sujay
Werner, Philipp
Strongly Correlated Electrons
Computational Physics
Nonequilibrium control of electronically ordered hidden phases may lead to the development of ultrafast switches and memory devices. In this study, we demonstrate tunable hidden orders in the photo-doped two-orbital extended Hubbard model. Using steady-state nonequilibrium dynamical mean field theory, we clarify the coexistence and interplay of nonthermal charge, spin, and orbital order. The hidden state at low effective temperature and sufficiently high photo-doping is reminiscent of Kugel-Khomskii order in the two-orbital Hubbard model at $\frac{1}{4}$ and $\frac{3}{4}$ filling, but it emerges out of a nonequilibrium charge ordered state and exhibits a different magnetic structure. A low-energy effective Hamiltonian is used to analyze the exchange processes which stabilize the nonthermal order.
title Photo-induced charge, spin, and orbital order in the two-orbital extended Hubbard model
topic Strongly Correlated Electrons
Computational Physics
url https://arxiv.org/abs/2408.06514