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Conformal perturbation theory for twisted fields

Conformal perturbation theory for twisted fields
Conformal perturbation theory for twisted fields
We investigate second order conformal perturbation theory for orbifolds of conformal field theories in two dimensions. To evaluate the necessary twisted sector correlation functions and their integrals, we map them from the sphere to its torus double cover. We discuss how this relates crossing symmetry to the modular group, and introduce a regularization scheme on the cover that allows to evaluate the integrals numerically. These methods do not require supersymmetry. As an application, we show that in the torus orbifold of 8 and 16 free bosons, twist fields are marginal at first order, but stop being marginal at second order.
Keller, Christoph
ef0bdcf5-45e2-4e94-b07f-336c851566d4
Zadeh, Ida
f1a525ce-9b07-456b-a4f3-435434f833ae
Keller, Christoph
ef0bdcf5-45e2-4e94-b07f-336c851566d4
Zadeh, Ida
f1a525ce-9b07-456b-a4f3-435434f833ae

Keller, Christoph and Zadeh, Ida (2020) Conformal perturbation theory for twisted fields. J.Phys.A, 53. (doi:10.1088/1751-8121/ab6b91).

Record type: Article

Abstract

We investigate second order conformal perturbation theory for orbifolds of conformal field theories in two dimensions. To evaluate the necessary twisted sector correlation functions and their integrals, we map them from the sphere to its torus double cover. We discuss how this relates crossing symmetry to the modular group, and introduce a regularization scheme on the cover that allows to evaluate the integrals numerically. These methods do not require supersymmetry. As an application, we show that in the torus orbifold of 8 and 16 free bosons, twist fields are marginal at first order, but stop being marginal at second order.

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Published date: 4 February 2020

Identifiers

Local EPrints ID: 501489
URI: http://eprints.soton.ac.uk/id/eprint/501489
PURE UUID: a57103b6-2fbd-40cd-853b-04a826c631a9
ORCID for Ida Zadeh: ORCID iD orcid.org/0000-0002-8803-0823

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Date deposited: 02 Jun 2025 17:00
Last modified: 06 Nov 2025 03:12

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Contributors

Author: Christoph Keller
Author: Ida Zadeh ORCID iD

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