Magnetism and superconductivity in doped triangular-lattice Mott insulators

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Hauptverfasser: Kim, Kun Woo, Pereg-Barnea, T.
Format: Preprint
Veröffentlicht: 2023
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author Kim, Kun Woo
Pereg-Barnea, T.
author_facet Kim, Kun Woo
Pereg-Barnea, T.
contents Inspired by recent advances in the fabrication of surface superlattices, and in particular the triangular lattice made of tin (Sn) atoms on silicon, we study an extended Hubbard mode on a triangular lattice. The observations of magnetism in these systems justify the inclusion of a strong on-site repulsion and the observation of superconductivity suggests including an effective, nearest-neighbor attractive interaction. The attractive interaction mimics the effect of strong on-site repulsion near half filling, which can be seen in strong coupling vertex calculations such as the Eliashberg method. With this extended Hubbard model on a triangular lattice with its geometrical frustration, we find a rich phase diagram of various magnetic orders and pairing functions, within the framework of self-consistent mean field theory. We uncover the competition among magnetism and unconventional superconductivity, and their coexistence for triplet pairings. We follow the Fermi surface of the system as the system is doped away from half filling and find nesting vectors and a Lifshitz transition which provide an intuitive understanding of the phase transitions between the many orders we consider.
format Preprint
id arxiv_https___arxiv_org_abs_2307_11979
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Magnetism and superconductivity in doped triangular-lattice Mott insulators
Kim, Kun Woo
Pereg-Barnea, T.
Strongly Correlated Electrons
Inspired by recent advances in the fabrication of surface superlattices, and in particular the triangular lattice made of tin (Sn) atoms on silicon, we study an extended Hubbard mode on a triangular lattice. The observations of magnetism in these systems justify the inclusion of a strong on-site repulsion and the observation of superconductivity suggests including an effective, nearest-neighbor attractive interaction. The attractive interaction mimics the effect of strong on-site repulsion near half filling, which can be seen in strong coupling vertex calculations such as the Eliashberg method. With this extended Hubbard model on a triangular lattice with its geometrical frustration, we find a rich phase diagram of various magnetic orders and pairing functions, within the framework of self-consistent mean field theory. We uncover the competition among magnetism and unconventional superconductivity, and their coexistence for triplet pairings. We follow the Fermi surface of the system as the system is doped away from half filling and find nesting vectors and a Lifshitz transition which provide an intuitive understanding of the phase transitions between the many orders we consider.
title Magnetism and superconductivity in doped triangular-lattice Mott insulators
topic Strongly Correlated Electrons
url https://arxiv.org/abs/2307.11979