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January 20, 2026Nature Communications4 citationsOpen Access

Unconventional hysteresis due to time-reversal symmetry breaking superconductivity in RbV3Sb5

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SWShuo WangXFXilin FengJFJingzhi Fang

Key Points

  • The aim is to investigate the time-reversal symmetry-breaking superconductivity in RbV3Sb5.
  • Conducted magnetoresistance measurements while sweeping an in-plane magnetic field.
  • Compared responses with CsV3Sb5 samples below their superconducting transition temperature.
  • Applied large currents to transition from a finite-resistance state to superconductivity.
  • Observed unconventional hysteresis in magnetoresistance due to internal mechanisms.
  • No hysteresis found in CsV3Sb5 under similar conditions.
  • Re-entrance of superconductivity noted during magnetic field sweeping around 400 mK.

Abstract

The study of kagome materials has recently attracted much attention due to the presence of many electron-electron interaction-driven phases in a single material. In this work, we report the time-reversal symmetry-breaking superconductivity in the thin-flake kagome material RbV3Sb5. Firstly, when an in-plane magnetic field is swept in opposite directions, we observe an unconventional form of hysteresis in magnetoresistance, which is different from the hysteresis induced by extrinsic mechanisms. In contrast, no such hysteresis is observed in CsV3Sb5 samples below their superconducting transition temperature. Strikingly, at a fixed magnetic field, the finite-resistance state in RbV3Sb5 can be transitioned into the superconducting state by applying and subsequently removing a large current. Secondly, at temperatures around 400 mK, the re-entrance of superconductivity occurs during an in-plane field-sweeping process with a fixed sweeping direction. The observations of the unconventional hysteresis and re-entrance suggest the existence of time-reversal symmetry-breaking superconducting states in RbV3Sb5.

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Cite This Study

Wang et al. (2026) studied this question.

synapsesocial.com/papers/696f1a629e64f732b51eeabahttps://doi.org/10.1038/s41467-025-68067-8
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