Charge Susceptibility and Kubo Response in Hatsugai-Kohmoto-related Models

Fuente: arXiv
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Hauptverfasser: Ma, Yuhao, Zhao, Jinchao, Huang, Edwin W., Kush, Dhruv, Bradlyn, Barry, Phillips, Philip W.
Format: Preprint
Veröffentlicht: 2024
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author Ma, Yuhao
Zhao, Jinchao
Huang, Edwin W.
Kush, Dhruv
Bradlyn, Barry
Phillips, Philip W.
author_facet Ma, Yuhao
Zhao, Jinchao
Huang, Edwin W.
Kush, Dhruv
Bradlyn, Barry
Phillips, Philip W.
contents We study in depth the charge susceptibility for the band Hatsugai-Kohmoto (HK) and orbital (OHK) models. As either of these models describes a Mott insulator, the charge susceptibility takes on the form of a modified density response function with lower and upper Hubbard bands, thereby giving rise to a multi-pole structure. The particle-hole continuum consists of hot spots along the $ω$ vs $q$ axis arising from inter-band transitions. Such transitions, which are strongly suppressed in non-interacting systems, obtain here because of the non-rigidity of the Hubbard bands. This modified density response function gives rise to a plasmon dispersion that is inversely dependent on the momentum, resulting in an additional contribution to the conventional f-sum rule. This extra contribution originates from a long-range diamagnetic contribution to the current. This results in a non-commutativity of the long-wavelength ($q\rightarrow 0$) and thermodynamic ($L\rightarrow\infty$) limits. When the correct limits are taken, we find that the Kubo response computed with either open or periodic boundary conditions yields identical results that are consistent with the continuity equation contrary to recent claims. We also show that the long wavelength pathology of the current noted previously also plagues the Anderson impurity model interpretation of dynamical mean-field theory (DMFT).
format Preprint
id arxiv_https___arxiv_org_abs_2409_07522
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Charge Susceptibility and Kubo Response in Hatsugai-Kohmoto-related Models
Ma, Yuhao
Zhao, Jinchao
Huang, Edwin W.
Kush, Dhruv
Bradlyn, Barry
Phillips, Philip W.
Strongly Correlated Electrons
We study in depth the charge susceptibility for the band Hatsugai-Kohmoto (HK) and orbital (OHK) models. As either of these models describes a Mott insulator, the charge susceptibility takes on the form of a modified density response function with lower and upper Hubbard bands, thereby giving rise to a multi-pole structure. The particle-hole continuum consists of hot spots along the $ω$ vs $q$ axis arising from inter-band transitions. Such transitions, which are strongly suppressed in non-interacting systems, obtain here because of the non-rigidity of the Hubbard bands. This modified density response function gives rise to a plasmon dispersion that is inversely dependent on the momentum, resulting in an additional contribution to the conventional f-sum rule. This extra contribution originates from a long-range diamagnetic contribution to the current. This results in a non-commutativity of the long-wavelength ($q\rightarrow 0$) and thermodynamic ($L\rightarrow\infty$) limits. When the correct limits are taken, we find that the Kubo response computed with either open or periodic boundary conditions yields identical results that are consistent with the continuity equation contrary to recent claims. We also show that the long wavelength pathology of the current noted previously also plagues the Anderson impurity model interpretation of dynamical mean-field theory (DMFT).
title Charge Susceptibility and Kubo Response in Hatsugai-Kohmoto-related Models
topic Strongly Correlated Electrons
url https://arxiv.org/abs/2409.07522