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Interferometric Signatures of Zero Modes in Fractional Quantum Hall-Superconductor Heterostructures

Junyi Cao, Ramanjit Sohal, Angela Kou, Eduardo Fradkin·August 19, 2026
cond-mat.str-elMesoscale Physicscond-mat.supr-conQuantum Physics

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Abstract

Fractional quantum Hall-superconductor (FQH-SC) heterostructures are predicted to host defect-bound parafermion zero modes (PZMs). We propose two related configurations to probe their fusion structure. In a Josephson junction coupled to a single quantum point contact (QPC), quasiparticle tunneling switches the defect fusion channel, producing stochastic transitions between branches of the fractional Josephson spectrum. Embedding the junction in a two-QPC Fabry-Pérot interferometer provides a complementary probe. Weak zero mode tunneling produces fusion-channel-dependent interference while strong tunneling makes the interferometer probe a superposition of fusion channels and strongly suppresses the signal: in the topological limit it vanishes exactly, revealing the defects' non-Abelian nature even when the parent FQH state is Abelian.

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