Spin and Charge Fluctuation Induced Pairing in ABCB Tetralayer Graphene

Fuente: arXiv
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Hauptverfasser: Fischer, Ammon, Klebl, Lennart, Profe, Jonas B., Rothstein, Alexander, Waldecker, Lutz, Beschoten, Bernd, Wehling, Tim O., Kennes, Dante M.
Format: Preprint
Veröffentlicht: 2023
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author Fischer, Ammon
Klebl, Lennart
Profe, Jonas B.
Rothstein, Alexander
Waldecker, Lutz
Beschoten, Bernd
Wehling, Tim O.
Kennes, Dante M.
author_facet Fischer, Ammon
Klebl, Lennart
Profe, Jonas B.
Rothstein, Alexander
Waldecker, Lutz
Beschoten, Bernd
Wehling, Tim O.
Kennes, Dante M.
contents Motivated by the recent experimental realization of ABCB stacked tetralayer graphene [Wirth et al., ACS Nano 16, 16617 (2022)], we study correlated phenomena in moiré-less graphene tetralayers for realistic interaction profiles using an orbital resolved random phase approximation approach. We demonstrate that magnetic fluctuations originating from local interactions are crucial close to the van Hove singularities on the electron- and hole-doped side promoting layer selective ferrimagnetic states. Spin fluctuations around these magnetic states enhance unconventional spin-triplet, valley-singlet superconductivity with $f$-wave symmetry due to intervalley scattering. Charge fluctuations arising from long range Coulomb interactions promote doubly degenerate p-wave superconductivity close to the van Hove singularities. At the conduction band edge of ABCB graphene, we find that both spin and charge fluctuations drive $f$-wave superconductivity. Our analysis suggests a strong competition between superconducting states emerging from long- and short-ranged Coulomb interactions and thus stresses the importance of microscopically derived interaction profiles to make reliable predictions for the origin of superconductivity in graphene based heterostructures.
format Preprint
id arxiv_https___arxiv_org_abs_2305_14438
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Spin and Charge Fluctuation Induced Pairing in ABCB Tetralayer Graphene
Fischer, Ammon
Klebl, Lennart
Profe, Jonas B.
Rothstein, Alexander
Waldecker, Lutz
Beschoten, Bernd
Wehling, Tim O.
Kennes, Dante M.
Superconductivity
Mesoscale and Nanoscale Physics
Strongly Correlated Electrons
Motivated by the recent experimental realization of ABCB stacked tetralayer graphene [Wirth et al., ACS Nano 16, 16617 (2022)], we study correlated phenomena in moiré-less graphene tetralayers for realistic interaction profiles using an orbital resolved random phase approximation approach. We demonstrate that magnetic fluctuations originating from local interactions are crucial close to the van Hove singularities on the electron- and hole-doped side promoting layer selective ferrimagnetic states. Spin fluctuations around these magnetic states enhance unconventional spin-triplet, valley-singlet superconductivity with $f$-wave symmetry due to intervalley scattering. Charge fluctuations arising from long range Coulomb interactions promote doubly degenerate p-wave superconductivity close to the van Hove singularities. At the conduction band edge of ABCB graphene, we find that both spin and charge fluctuations drive $f$-wave superconductivity. Our analysis suggests a strong competition between superconducting states emerging from long- and short-ranged Coulomb interactions and thus stresses the importance of microscopically derived interaction profiles to make reliable predictions for the origin of superconductivity in graphene based heterostructures.
title Spin and Charge Fluctuation Induced Pairing in ABCB Tetralayer Graphene
topic Superconductivity
Mesoscale and Nanoscale Physics
Strongly Correlated Electrons
url https://arxiv.org/abs/2305.14438