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Published on: August 2, 2019
Nematic and chiral superconductivity emerging within the loop-current phase in kagome metals
Rina Tazai1, Youichi Yamakawa2, Hiroshi Kontani3
1Center for Emergent Matter Science, RIKEN, Wako, Japan. rina.tazai@riken.jp.
Abstract:
The kagome metals AV3Sb5 (A = Cs, Rb, K) host multiple symmetry-breaking phases, including charge-density-wave and loop-current orders, and exhibit highly exotic superconductivity with pronounced nematicity and chirality. Remarkably, even dilute impurities transform this exotic superconducting state into an isotropic s-wave state. These observations pose a challenge to existing theoretical scenarios. We show that loop-current order induces nematic chiral d-wave superconductivity in kagome metals. The loop-current-induced orbital magnetization (OM) stabilizes one chiral superconducting channels. This OM-chirality coupling mechanism is generic and applies to pairing driven by either attractive or repulsive interactions. Furthermore, coexisting loop-current and bond orders give rise to pronounced nematic chiral superconductivity even for an almost C6-symmetric Fermi surface. For attractive pairing, dilute impurities suppress the chiral state and restore a conventional s-wave phase, as observed experimentally. The theory further predicts a robust 2 × 2 pair-density modulation. This study provides key insights into time-reversal-symmetry-breaking exotic superconductivity in kagome metals.
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