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Hidden weak-pairing superconductivity of non-interacting anyons obeying frac{1}{3} statistics

arXiv
Authors: Zheng-Duo Fan, Ashvin Vishwanath, Zijian Wang

Year

2026

Paper ID

63765

Status

Preprint

Abstract Read

~2 min

Abstract Words

233

Citations

0

Abstract

We show that a non-interacting gas of charge-e/3 anyons with exchange statistics θ=-π/3 can superconduct through a hidden weak-pairing mechanism. Such an anyon gas arises naturally in doped fractional Chern insulators at filling 1/3 or 2/3, where projective lattice translations enforce three degenerate anyon pockets. Exploiting this three-pocket structure, we develop a flux-attachment construction in which the average statistical flux vanishes, thereby mapping the problem to three species of composite fermions (CFs) in zero effective magnetic field. We show that the anyon statistics itself, encoded in statistical gauge field fluctuations, supplies the pairing glue and drives the CFs into a p-ip paired state, which corresponds to a f-if physical superconductor. The CF strong-pairing phase is adiabatically connected to Laughlin's picture of anyon superconductivity, where charge-e/3 anyons bind into charge-2e/3 molecules, which then lead to superconductivity. By contrast, the more natural weak-pairing phase of CFs realizes a distinct superconducting phase - its edge is characterized by a chiral central charge c_-=-1/2, in contrast to the prediction of integer c_- for the anyon superconductor based on Laughlin's picture, thereby resolving the discrepancy between previous theories and recent numerical results. Our theory provides a natural framework for understanding superconductivity near fractional Chern insulators, as observed in recent experiments. Finally, we discuss extensions of our theory that predict new chiral superconductors adjacent to FCIs at other fillings.

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  • We show that a non-interacting gas of charge-e/3 anyons with exchange statistics θ=-π/3 can superconduct through a hidden weak-pairing mechanism.

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Current Paper #63765 #68437 Transition-state lattice modes ... #68440 Classical State Preparation for... #68401 Quantum Ghost Spectroscopy Reve... #68474 Concentration-Free Quantum Kern...

External citation index: OpenAlex citation signal • updated 2026-06-11 04:38:58

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