Repository logo
 

Pairing of composite electrons and composite holes in 𝜈𝑇=1 quantum Hall bilayers

Accepted version
Peer-reviewed

Loading...
Thumbnail Image

Change log

Abstract

Motivated by recent experimental indications of preformed electron-hole pairs in νT=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 s-wave channel in contrast to the dominant p-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.

Description

Journal Title

Physical Review Research

Conference Name

Journal ISSN

2643-1564
2643-1564

Volume Title

Publisher

American Physical Society

Rights and licensing

Except where otherwised noted, this item's license is described as Attribution 4.0 International
Sponsorship
EPSRC (EP/W00187X/1)

Relationships

Is derived from:

Version History

Now showing 1 - 2 of 2
VersionDateSummary
2024-08-23 15:06:04
Published version added
1*
2023-10-10 00:32:34
* Selected version