Abstract
Broken time-reversal symmetry in the absence of spin order indicates the presence of unusual phases such as orbital magnetism and loop currents1–4. The recently discovered kagome superconductors AV3Sb5 (where A is K, Rb or Cs)5,6 display an exotic charge-density-wave (CDW) state and have emerged as a strong candidate for materials hosting a loop current phase. The idea that the CDW breaks time-reversal symmetry7–14 is, however, being intensely debated due to conflicting experimental data15–17. Here we use laser-coupled scanning tunnelling microscopy to study RbV3Sb5. By applying linearly polarized light along high-symmetry directions, we show that the relative intensities of the CDW peaks can be reversibly switched, implying a substantial electro-striction response, indicative of strong nonlinear electron–phonon coupling. A similar CDW intensity switching is observed with perpendicular magnetic fields, which implies an unusual piezo-magnetic response that, in turn, requires time-reversal symmetry breaking. We show that the simplest CDW that satisfies these constraints is an out-of-phase combination of bond charge order and loop currents that we dub a congruent CDW flux phase. Our laser scanning tunnelling microscopy data open the door to the possibility of dynamic optical control of complex quantum phenomenon in correlated materials.
Original language | English (US) |
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Pages (from-to) | 60-66 |
Number of pages | 7 |
Journal | Nature |
Volume | 631 |
Issue number | 8019 |
Early online date | Jun 12 2024 |
DOIs | |
State | Published - Jul 4 2024 |
ASJC Scopus subject areas
- General
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Data for manuscript entitled "Optical Manipulation of the Charge Density Wave state in RbV3Sb5"
Xing, Y. (Creator), Bae, S. (Creator), Ritz, E. (Creator), Yang, F. (Creator), Birol, T. (Creator), Salinas , A. N. C. (Creator), Ortiz, B. R. (Creator), Wilson , S. D. (Creator), Wang, Z. (Creator), Fernandes, R. M. (Creator) & Madhavan, V. (Creator), University of Illinois Urbana-Champaign, May 23 2024
DOI: 10.13012/B2IDB-4197245_V1
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Raw topographies for the study of magnetic field response of RbV3Sb5
Xing, Y. (Creator), Bae, S. (Creator) & Madhavan, V. (Creator), University of Illinois Urbana-Champaign, Aug 6 2024
DOI: 10.13012/B2IDB-0274244_V1
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Topography for the study of magnetic field response of RbV3Sb5
Xing, Y. (Creator), Bae, S. (Creator) & Madhavan, V. (Creator), University of Illinois Urbana-Champaign, Jul 28 2024
DOI: 10.13012/B2IDB-1464243_V1
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