论文标题

修改后的大型阿伯利亚3形式理论的nilpotent对称性:增强超级场方法

Nilpotent Symmetries of a Modified Massive Abelian 3-Form Theory: Augmented Superfield Approach

论文作者

Rao, A. K., Malik, R. P.

论文摘要

We derive the off-shell nilpotent and absolutely anticommuting (anti-)BRST symmetry transformations for any arbitrary D-dimensional St$\ddot u$ckelberg-modified massive Abelian 3-form theory within the framework of augmented version of superfield approach (AVSA) to Becchi-Rouet-Stora-Tyutin (BRST) formalism where, in addition to the horizo​​ntality condition (HC), we利用规格不变限制(GIR)的理论强度推断出适当的仪表,相关的(反)幽灵领域,辅助领域,ST $ \ ddot u $ ckelberg补偿领域等。我们目前努力的亮点之一是推论一组新的(反)BRST不变的Curci-Ferrari(cf)型限制,这些限制在我们当前理论的无质量版本中找不到,其中只有HC在所有(抗)BRST变换和非常具体的CF-type cf-typepece cor的派生中起着重要作用。从各种理论考虑的情况下,整个后者的派生的替代方式也是我们目前调查的有趣结果。

We derive the off-shell nilpotent and absolutely anticommuting (anti-)BRST symmetry transformations for any arbitrary D-dimensional St$\ddot u$ckelberg-modified massive Abelian 3-form theory within the framework of augmented version of superfield approach (AVSA) to Becchi-Rouet-Stora-Tyutin (BRST) formalism where, in addition to the horizontality condition (HC), we exploit the theoretical strength of the gauge invariant restriction (GIR) to deduce the proper transformations for the gauge, associated (anti-)ghost fields, auxiliary fields, St$\ddot u$ckelberg compensating field, etc. In fact, it is an elegant and delicate combination of HC and GIR (within the ambit of AVSA) that is crucial for all our discussions and derivations. One of the highlights of our present endeavor is the deduction of a new set of (anti-)BRST invariant Curci-Ferrari (CF)-type restrictions which are not found in the massless version of our present theory where only the HC plays an important role in the derivation of all the (anti-)BRST transformations and a very specific set of CF-type restrictions. The alternative ways of the derivation of the full set of the latter, from various theoretical considerations, are also interesting results of our present investigation.

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