Magnetic field-induced momentum-dependent symmetry breaking in a kagome superconductor

Fuente: arXiv
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Main Authors: Huang, Jianwei, Ren, Zheng, Tan, Hengxin, Hyun, Jounghoon, Zhang, Yichen, Hulse, Thomas, Liu, Zhaoyu, DeStefano, Jonathan M., Xie, Yaofeng, Yue, Ziqin, Kono, Junichiro, Dai, Pengcheng, He, Yu, Pulkkinen, Aki, Minár, Ján, Chu, Jiun-Haw, Wang, Ziqiang, Yan, Binghai, Fernandes, Rafael M., Yi, Ming
Format: Preprint
Published: 2025
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author Huang, Jianwei
Ren, Zheng
Tan, Hengxin
Hyun, Jounghoon
Zhang, Yichen
Hulse, Thomas
Liu, Zhaoyu
DeStefano, Jonathan M.
Xie, Yaofeng
Yue, Ziqin
Kono, Junichiro
Dai, Pengcheng
He, Yu
Pulkkinen, Aki
Minár, Ján
Chu, Jiun-Haw
Wang, Ziqiang
Yan, Binghai
Fernandes, Rafael M.
Yi, Ming
author_facet Huang, Jianwei
Ren, Zheng
Tan, Hengxin
Hyun, Jounghoon
Zhang, Yichen
Hulse, Thomas
Liu, Zhaoyu
DeStefano, Jonathan M.
Xie, Yaofeng
Yue, Ziqin
Kono, Junichiro
Dai, Pengcheng
He, Yu
Pulkkinen, Aki
Minár, Ján
Chu, Jiun-Haw
Wang, Ziqiang
Yan, Binghai
Fernandes, Rafael M.
Yi, Ming
contents When multiple degrees of freedom share similar energy scales in quantum materials, intertwined electronic orders, which exhibit broken symmetries, are often strongly coupled. Recent studies on kagome superconductors such as CsV$_3$Sb$_5$ report rotational and time-reversal symmetry breaking linked to a charge density wave. Here, we observe a momentum-selective response of the electronic structure of CsV$_3$Sb$_5$ to an external magnetic field. By performing angle-resolved photoemission spectroscopy in a tuneable magnetic field, we demonstrate that the response of the electronic structure is compatible with piezomagnetism along with strong orbital selectivity. Our results show that the origin of the time-reversal symmetry breaking is associated with the vanadium Van Hove singularities at the onset of the charge density wave order. We also demonstrate the presence of fluctuations beyond the charge ordering temperature. Our results reveal that magnetic fields can be used as tuning knobs for disentangling intertwined orders in the momentum space for quantum materials.
format Preprint
id arxiv_https___arxiv_org_abs_2512_11341
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Magnetic field-induced momentum-dependent symmetry breaking in a kagome superconductor
Huang, Jianwei
Ren, Zheng
Tan, Hengxin
Hyun, Jounghoon
Zhang, Yichen
Hulse, Thomas
Liu, Zhaoyu
DeStefano, Jonathan M.
Xie, Yaofeng
Yue, Ziqin
Kono, Junichiro
Dai, Pengcheng
He, Yu
Pulkkinen, Aki
Minár, Ján
Chu, Jiun-Haw
Wang, Ziqiang
Yan, Binghai
Fernandes, Rafael M.
Yi, Ming
Strongly Correlated Electrons
Materials Science
Superconductivity
When multiple degrees of freedom share similar energy scales in quantum materials, intertwined electronic orders, which exhibit broken symmetries, are often strongly coupled. Recent studies on kagome superconductors such as CsV$_3$Sb$_5$ report rotational and time-reversal symmetry breaking linked to a charge density wave. Here, we observe a momentum-selective response of the electronic structure of CsV$_3$Sb$_5$ to an external magnetic field. By performing angle-resolved photoemission spectroscopy in a tuneable magnetic field, we demonstrate that the response of the electronic structure is compatible with piezomagnetism along with strong orbital selectivity. Our results show that the origin of the time-reversal symmetry breaking is associated with the vanadium Van Hove singularities at the onset of the charge density wave order. We also demonstrate the presence of fluctuations beyond the charge ordering temperature. Our results reveal that magnetic fields can be used as tuning knobs for disentangling intertwined orders in the momentum space for quantum materials.
title Magnetic field-induced momentum-dependent symmetry breaking in a kagome superconductor
topic Strongly Correlated Electrons
Materials Science
Superconductivity
url https://arxiv.org/abs/2512.11341