Dimensional Regularization in Quantum Field Theory with Ultraviolet Cutoff

Fuente: arXiv
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Main Authors: Demir, Durmus, Karahan, Canan, Sargın, Ozan
Format: Preprint
Published: 2023
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author Demir, Durmus
Karahan, Canan
Sargın, Ozan
author_facet Demir, Durmus
Karahan, Canan
Sargın, Ozan
contents In view of various field-theoretic reasons, in the present work, we study the question of if the usual dimensional regularization can be extended to quantum field theories with an ultraviolet cutoff (Poincare-breaking scale) in a way preserving all the properties of the dimensional regularization. And we find that it can indeed be. The resulting extension gives a framework in which the power-law and logarithmic divergences get detached to involve different scales. This new regularization scheme, the detached regularization as we call it, enables one to treat the power-law and logarithmic divergences differently and independently. We apply the detached regularization to the computation of the vacuum energy and to two well-known QFTs namely the scalar and spinor electrodynamics. As a case study, we consider Fujikawa's subtractive renormalization in the framework of the detached regularization, and show its effectiveness up to two loops by specializing to scalar self energy. We discuss various application areas of the detached regularization.
format Preprint
id arxiv_https___arxiv_org_abs_2301_03323
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Dimensional Regularization in Quantum Field Theory with Ultraviolet Cutoff
Demir, Durmus
Karahan, Canan
Sargın, Ozan
High Energy Physics - Theory
High Energy Physics - Phenomenology
In view of various field-theoretic reasons, in the present work, we study the question of if the usual dimensional regularization can be extended to quantum field theories with an ultraviolet cutoff (Poincare-breaking scale) in a way preserving all the properties of the dimensional regularization. And we find that it can indeed be. The resulting extension gives a framework in which the power-law and logarithmic divergences get detached to involve different scales. This new regularization scheme, the detached regularization as we call it, enables one to treat the power-law and logarithmic divergences differently and independently. We apply the detached regularization to the computation of the vacuum energy and to two well-known QFTs namely the scalar and spinor electrodynamics. As a case study, we consider Fujikawa's subtractive renormalization in the framework of the detached regularization, and show its effectiveness up to two loops by specializing to scalar self energy. We discuss various application areas of the detached regularization.
title Dimensional Regularization in Quantum Field Theory with Ultraviolet Cutoff
topic High Energy Physics - Theory
High Energy Physics - Phenomenology
url https://arxiv.org/abs/2301.03323