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Pairing of Composite-Electrons and Composite-Holes in νT=1ν_T=1 Quantum Hall Bilayers

Published 17 Mar 2023 in cond-mat.str-el, cond-mat.mes-hall, and cond-mat.supr-con | (2303.10212v1)

Abstract: Motivated by recent experimental indications of preformed electron-hole pairs in νT=1\nu_T=1 quantum Hall bilayers at relatively large separation, we formulate a Chern-Simons (CS) theory of the coupled composite electron liquid (CEL) and composite hole liquid (CHL). We show that the effective action of the CS gauge field fluctuations around the saddle-point leads to stable pairing between CEL and CHL. We find that the CEL-CHL pairing theory leads to a dominant ss-wave channel in contrast to the dominant pp-wave channel found in the CEL-CEL pairing theory. Moreover, the CEL-CHL pairing is generally stronger than the CEL-CEL pairing across the whole frequency spectrum. Finally, we discuss possible differences between the two pairing mechanisms that may be probed in experiments.

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