Visualizing isospin magnetic texture and intervalley exchange interaction in rhombohedral tetralayer graphene

Fuente: arXiv
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Main Authors: Auerbach, Nadav, Dutta, Surajit, Uzan, Matan, Vituri, Yaar, Zhou, Yaozhang, Meltzer, Alexander Y., Grover, Sameer, Holder, Tobias, Emanuel, Peleg, Huber, Martin E., Myasoedov, Yuri, Watanabe, Kenji, Taniguchi, Takashi, Oreg, Yuval, Berg, Erez, Zeldov, Eli
Format: Preprint
Published: 2025
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author Auerbach, Nadav
Dutta, Surajit
Uzan, Matan
Vituri, Yaar
Zhou, Yaozhang
Meltzer, Alexander Y.
Grover, Sameer
Holder, Tobias
Emanuel, Peleg
Huber, Martin E.
Myasoedov, Yuri
Watanabe, Kenji
Taniguchi, Takashi
Oreg, Yuval
Berg, Erez
Zeldov, Eli
author_facet Auerbach, Nadav
Dutta, Surajit
Uzan, Matan
Vituri, Yaar
Zhou, Yaozhang
Meltzer, Alexander Y.
Grover, Sameer
Holder, Tobias
Emanuel, Peleg
Huber, Martin E.
Myasoedov, Yuri
Watanabe, Kenji
Taniguchi, Takashi
Oreg, Yuval
Berg, Erez
Zeldov, Eli
contents The tunable band structure and nontrivial topology of multilayer rhombohedral graphene lead to a variety of correlated electronic states with isospin orders-meaning ordered states in the combined spin and valley degrees of freedom-dictated by the interplay of spin-orbit coupling and Hunds exchange interactions. However, methods for mapping local isospin textures and determining the exchange energies are currently lacking. Here, we image the magnetization textures in tetralayer rhombohedral graphene using a nanoscale superconducting quantum interference device. We observe sharp magnetic phase transitions that indicate spontaneous time-reversal symmetry breaking. In the quarter-metal phase, the spin and orbital moments align closely, providing a bound on the spin-orbit coupling energy. We also show that the half-metal phase has a very small magnetic anisotropy, which provides an experimental lower bound on the intervalley Hunds exchange interaction energy. This is found to be close to its theoretical upper bound. The ability to resolve the local isospin texture and the different interaction energies will allow a better understanding of the phase transition hierarchy and the numerous correlated electronic states arising from spontaneous and induced isospin symmetry breaking in graphene heterostructures.
format Preprint
id arxiv_https___arxiv_org_abs_2503_14146
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Visualizing isospin magnetic texture and intervalley exchange interaction in rhombohedral tetralayer graphene
Auerbach, Nadav
Dutta, Surajit
Uzan, Matan
Vituri, Yaar
Zhou, Yaozhang
Meltzer, Alexander Y.
Grover, Sameer
Holder, Tobias
Emanuel, Peleg
Huber, Martin E.
Myasoedov, Yuri
Watanabe, Kenji
Taniguchi, Takashi
Oreg, Yuval
Berg, Erez
Zeldov, Eli
Mesoscale and Nanoscale Physics
The tunable band structure and nontrivial topology of multilayer rhombohedral graphene lead to a variety of correlated electronic states with isospin orders-meaning ordered states in the combined spin and valley degrees of freedom-dictated by the interplay of spin-orbit coupling and Hunds exchange interactions. However, methods for mapping local isospin textures and determining the exchange energies are currently lacking. Here, we image the magnetization textures in tetralayer rhombohedral graphene using a nanoscale superconducting quantum interference device. We observe sharp magnetic phase transitions that indicate spontaneous time-reversal symmetry breaking. In the quarter-metal phase, the spin and orbital moments align closely, providing a bound on the spin-orbit coupling energy. We also show that the half-metal phase has a very small magnetic anisotropy, which provides an experimental lower bound on the intervalley Hunds exchange interaction energy. This is found to be close to its theoretical upper bound. The ability to resolve the local isospin texture and the different interaction energies will allow a better understanding of the phase transition hierarchy and the numerous correlated electronic states arising from spontaneous and induced isospin symmetry breaking in graphene heterostructures.
title Visualizing isospin magnetic texture and intervalley exchange interaction in rhombohedral tetralayer graphene
topic Mesoscale and Nanoscale Physics
url https://arxiv.org/abs/2503.14146