paper

The free energy of the large- fermionic Chern$\unicode{x2013}$Simons theory in the 'temporal' gauge

arXiv:2307.11020 · doi:10.4310/ATMP.251120045146

Abstract

Most of the computational evidence for the Bose$\unicode{x2013}$Fermi duality of fundamental fields coupled to Chern$\unicode{x2013}$Simons theories originates in large- calculations performed in the light-cone gauge. This gauge is ill-suited to computations in curved spacetimes, like the evaluation of the partition function on for arbitrary genus . In this paper, we use another gauge, the 'temporal' gauge, to set up the computation of this partition function. In the large- limit, and the special case , we take the computation through to the end by setting up and solving the gap equations, generalizing tricks explored in arXiv:1410.0558 to finite temperature. Our final results are in perfect agreement with earlier light-cone gauge results, providing a consistency check of both the formalism developed in this paper as well as previously performed light-cone gauge computations. In a follow-up paper, we will report on using our formalism to explicitly compute the partition function on for a finite-sized sphere.

77 pages