论文标题
巨大的旋转相对论粒子:以BRST和可超级超级方法重新审视
Massive Spinning Relativistic Particle: Revisited Under BRST and Supervariable Approaches
论文作者
论文摘要
我们讨论了连续和无限的规格,超高速,重新聚集,nilpotent becchi-rouet-stora-tyutin(BRST)和抗BRST对称性,并得出了一个(0+1) - 维(1D)质量模型的旋转相关粒子的相应的nilpotent指控。我们利用BRST和可超级超级方法的理论潜力和力量来推导(反)BRST对称性,并为该系统耦合(但同等)Lagrangians。特别是,我们捕获了在新提出的(反)手性超级超级式方法(ACSA)的框架内保守(反)BRST的绝对反对性(ACSA)的绝对反应性,只有(ACSA)仅在(只有(反 - )手性超级超级方便的情况下(及其合适的超级扩张)(及其合适的超级扩张)(及其沿Grassmannian the Grassmann Indiver)(S)。我们目前研究的新发现之一是通过对普通空间中(反)BR的绝对反应性限制的curci-ferrari(CF)型限制的推导。 (i)(i)耦合的拉格朗日人的对称不变性以及(ii)保守和nilpotent(反)BRST的绝对反应证明。鉴于我们仅考虑了(反)手性超级扩张,对(反)BRST指控的反交换性质的观察是一个新的结果。
We discuss the continuous and infinitesimal gauge, supergauge, reparameterization, nilpotent Becchi-Rouet-Stora-Tyutin (BRST) and anti-BRST symmetries and derive corresponding nilpotent charges for the one (0+1)-dimensional (1D) massive model of a spinning relativistic particle. We exploit the theoretical potential and power of the BRST and supervariable approaches to derive the (anti-)BRST symmetries and coupled (but equivalent) Lagrangians for this system. In particular, we capture the off-shell nilpotency and absolute anticommutatvity of the conserved (anti-)BRST charges within the framework of the newly proposed (anti-)chiral supervariable approach (ACSA) to BRST formalism where only the (anti-)chiral supervariables (and their suitable super expansions are taken into account along the Grassmannian direction(s)). One of the novel observations of our present investigation is the derivation of the Curci-Ferrari (CF)-type restriction by the requirement of the absolute anticommutatvity of the (anti-)BRST charges in the ordinary space. We obtain the same restriction within the framework of ACSA to BRST formalism by (i) the symmetry invariance of the coupled Lagrangians, and (ii) the proof of the absolute anticommutatvity of the conserved and nilpotent (anti-)BRST charges. The observation of the anticommutativity property of the (anti-)BRST charges is a novel result in view of the fact that we have taken into account only the (anti-)chiral super expansions.