Bosonization, cocycles, and the D1-D5 CFT on the covering surface
Bosonization, cocycles, and the D1-D5 CFT on the covering surface
We consider the D1-D5 CFT near the orbifold point, specifically the computation of correlators involving twist sector fields using covering surface techniques. As is well known, certain twists introduce spin fields on the cover. Here we consider the bosonization of fermions to facilitate computations involving the spin fields. We find a set of cocycle operators that satisfy constraints coming from various
Burrington, Benjamin A.
29627b03-3742-4727-84aa-5501133ab0be
Peet, Amanda W.
8b11341b-adcf-45c0-a471-b6523fd466e3
Zadeh, Ida G.
f1a525ce-9b07-456b-a4f3-435434f833ae
8 January 2016
Burrington, Benjamin A.
29627b03-3742-4727-84aa-5501133ab0be
Peet, Amanda W.
8b11341b-adcf-45c0-a471-b6523fd466e3
Zadeh, Ida G.
f1a525ce-9b07-456b-a4f3-435434f833ae
Burrington, Benjamin A., Peet, Amanda W. and Zadeh, Ida G.
(2016)
Bosonization, cocycles, and the D1-D5 CFT on the covering surface.
Phys.Rev.D.
(doi:10.1103/PhysRevD.93.026004).
Abstract
We consider the D1-D5 CFT near the orbifold point, specifically the computation of correlators involving twist sector fields using covering surface techniques. As is well known, certain twists introduce spin fields on the cover. Here we consider the bosonization of fermions to facilitate computations involving the spin fields. We find a set of cocycle operators that satisfy constraints coming from various
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Published date: 8 January 2016
Identifiers
Local EPrints ID: 501492
URI: http://eprints.soton.ac.uk/id/eprint/501492
ISSN: 2470-0010
PURE UUID: e0ac5bda-1619-4461-8ca1-83e49bc6281c
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Date deposited: 02 Jun 2025 17:00
Last modified: 03 Jun 2025 02:14
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Author:
Benjamin A. Burrington
Author:
Amanda W. Peet
Author:
Ida G. Zadeh
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