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Duality equivalence between self-dual and topologically massive non-abelian models

机译:自对偶和拓扑大规模非阿贝尔模型之间的对偶对等

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The non-abelian version of the self-dual model proposed by Townsend, Pilch and van Nieuwen-huizen presents some well known difficulties not found in the abelian case, such as well defined duality operation leading to self-duality and dual equivalence with the Yang-Mills-Chern-Simons theory, for the full range of the coupling constant. These questions are tackled in this work using a distinct gauge lifting technique that is alternative to the master action approach first proposed by Deser and Jackiw. The master action, which has proved useful in exhibiting the dual equivalence between theories in diverse dimensions, runs into trouble when dealing with the non-abelian case apart from the weak coupling regime. This new dualization technique on the other hand, is insensitive of the non-abelian character of the theory and generalize straightforwardly from the abelian case. It also leads, in a simple manner, to the dual equivalence for the case of couplings with dynamical fermionic matter fields. As an application, we discuss the consequences of this dual equivalence in the context of 3D non-abelian bosonization. (C) 2001 Elsevier Science B.V. All rights reserved. [References: 34]
机译:Townsend,Pilch和van Nieuwen-huizen提出的非对偶模型的自我对偶模型存在一些众所周知的困难,例如在明确的对偶运算中导致了对偶和与杨的对等-Mills-Chern-Simons理论,用于耦合常数的整个范围。在这项工作中,使用独特的仪表提升技术解决了这些问题,该技术替代了Deser和Jackiw最初提出的主动作方法。事实证明,大师行动对展现不同维度的理论之间的对等等效是有用的,但在处理非阿贝尔案例时,除了弱耦合机制外,还陷入麻烦。另一方面,这种新的二元化技术对理论的非阿贝尔特征不敏感,可以直接从阿贝尔情况下概括。它也以简单的方式导致与动态铁离子物质场耦合的情况下的对等对等。作为一种应用,我们讨论了在3D非阿贝尔玻色化背景下这种双重对等的后果。 (C)2001 Elsevier Science B.V.保留所有权利。 [参考:34]

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