A 3D field-theoretic example for Hodge theory

IF 1.8 4区 物理与天体物理 Q2 PHYSICS, MULTIDISCIPLINARY EPL Pub Date : 2024-08-20 DOI:10.1209/0295-5075/ad5f25
A. K. Rao and R. P. Malik
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Abstract

We focus on the continuous symmetry transformations for the three (2 + 1)-dimensional (3D) system of a combination of the free Abelian 1-form and 2-form gauge theories within the framework of Becchi-Rouet-Stora-Tyutin (BRST) formalism. We establish that this combined system is a tractable field-theoretic model of Hodge theory. The symmetry operators of our present system provide the physical realizations of the de Rham cohomological operators of differential geometry at the algebraic level. Our present investigation is important in the sense that, for the first time, we are able to establish an odd dimensional (i.e., D = 3) field-theoretic system to be an example for Hodge theory (besides earlier works on a few interesting (0 + 1)-dimensional (1D) toy models as well as a set of well-known SUSY quantum mechanical systems of physical interest). For the sake of brevity, we have purposely not taken into account the 3D Chern-Simon term for the Abelian 1-form gauge field in our theory which allows the mass as well as the gauge invariance to co-exist together.
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霍奇理论的三维场论实例
我们在贝奇-鲁特-斯托拉-秋廷(BRST)形式主义的框架内,重点研究了自由阿贝尔1-形式和2-形式规理论组合的三(2 + 1)维(3D)体系的连续对称变换。我们确定这个组合系统是霍奇理论的一个可操作的场论模型。本系统的对称算子提供了微分几何的德拉姆同调算子在代数层面上的物理实现。我们目前的研究之所以重要,是因为我们首次建立了一个奇数维(即 D = 3)的场论系统,作为霍奇理论的范例(除了早先关于一些有趣的(0 + 1)维(1D)玩具模型的工作以及一组著名的具有物理意义的 SUSY 量子力学系统)。为了简洁起见,我们特意没有考虑我们理论中阿贝尔 1 形规量场的三维切尔-西蒙项,因为它允许质量和规量不变性同时存在。
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来源期刊
EPL
EPL 物理-物理:综合
CiteScore
3.30
自引率
5.60%
发文量
332
审稿时长
1.9 months
期刊介绍: General physics – physics of elementary particles and fields – nuclear physics – atomic, molecular and optical physics – classical areas of phenomenology – physics of gases, plasmas and electrical discharges – condensed matter – cross-disciplinary physics and related areas of science and technology. Letters submitted to EPL should contain new results, ideas, concepts, experimental methods, theoretical treatments, including those with application potential and be of broad interest and importance to one or several sections of the physics community. The presentation should satisfy the specialist, yet remain understandable to the researchers in other fields through a suitable, clearly written introduction and conclusion (if appropriate). EPL also publishes Comments on Letters previously published in the Journal.
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