Published August 17, 2022 | Version v1
Journal article Open

Nonlinear bosonization of Fermi surfaces: The method of coadjoint orbits

  • 1. University of Chicago

Description

We develop a method for bosonizing the Fermi surface based on the formalism of the coadjoint orbits. This allows one to parametrize the Fermi surface by a bosonic field that depends on the spacetime coordinates and on the position on the Fermi surface. The Wess-Zumino-Witten term in the effective action, governing the adiabatic phase acquired when the Fermi surface changes its shape, is completely fixed. As an effective field theory the action also involves a Hamiltonian, which contains, beside the kinetic energy and the Landau interaction, terms with arbitrary number of derivatives and fields. We show that the resulting local effective field theory captures both linear and nonlinear effects in Landau's Fermi liquid theory. The approach can be extended to incorporate spin degrees of freedom and the charge-2 fields corresponding to the BCS order parameter.

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PhysRevResearch.4.033131.pdf

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Additional details

Identifiers

DOI
10.1103/physrevresearch.4.033131
Other
oai:uchicago.tind.io:11646

Funding

National Science Foundation
PHY-1607611
National Science Foundation
NSF PHY-1748958
U.S. Department of Energy
DE-FG02-13ER41958
Simons Foundation
651440
Stony Brook University

UChicago Information

Division(s)
Physical Sciences Division
Department(s)
Enrico Fermi Institute, Kadanoff Center for Theoretical Physics
Center(s) or Institute(s)
James Franck Institute