论文标题

在五个维度上的旋转旋转形式主义,用于大规模和无质量振幅

Spinor-helicity formalism for massive and massless amplitudes in five dimensions

论文作者

Chiodaroli, Marco, Gunaydin, Murat, Johansson, Henrik, Roiban, Radu

论文摘要

已知五维仪表和重力理论具有惊人的特性。 d = 5是最低的张量态自然出现的最低尺寸,为触发洞察力提供了六维张量理论的测试场。五维超级强度是高度限制的,并接受了优雅的几何和代数配方,全球对称性在拉格朗日级别表现出来。 在本文中,我们朝着对五个维度的幅度进行系统的研究迈出了一步,并提出了五维版的旋转螺旋形式形式主义,适用于无质量,巨大和超对称状态。我们给出了壳旋转器和极化变量的明确表示,从而表明了小组对称性和规格的冗余。详细讨论了大量的自偶联张量状态,以及所有可以出现在物质耦合量规和超级理论中的内壳超级脉络。作为在中央电荷存在下考虑超对称性的副产品,我们获得了无质量的十维主要主要旋转纺纱旋物作为五维大型旋转器的产物。 我们介绍了三分之二和四个多样性的超级增压的紧凑表达式,包括几种新型的超级增压,它们要么直接升高至六个维度,要么没有出现在六维文献中。我们讨论了具有大量矢量和张量的重力理论的五维双拷贝结构的几个例子,这说明了我们构造的形式主义也可以用来大大简化n = 2 Maxwell-Ienstein Supergravities的双层拷贝构建。

Five-dimensional gauge and gravity theories are known to exhibit striking properties. D=5 is the lowest dimension where massive tensor states appear naturally, providing a testing ground for perturbative insights into six-dimensional tensor theories. Five-dimensional supergravities are highly constrained and admit elegant geometric and algebraic formulations, with global symmetries manifest at the Lagrangian level. In this paper, we take a step towards the systematic investigation of amplitudes in five dimensions, and present a five-dimensional version of the spinor-helicity formalism, applicable to massless, massive and supersymmetric states. We give explicit representations for on-shell spinor and polarization variables such that the little-group symmetry and gauge redundancy are manifest. Massive self-dual tensor states are discussed in some detail, as well as all the on-shell supermultiplets that can appear in matter-coupled gauge and supergravity theories. As a byproduct of considering supersymmetry in the presence of central charge, we obtain massless ten-dimensional Majorana-Weyl spinors as products of five-dimensional massive spinors. We present compact expressions for superamplitudes at multiplicity three and four, including several novel superamplitudes that either do not straightforwardly uplift to six dimensions, or have not appeared in the six-dimensional literature. We discuss several examples of five-dimensional double-copy constructions in the context of gravitational theories with massive vectors and tensors, illustrating that the formalism we construct can also be used to considerably streamline the double-copy construction of N=2 Maxwell-Einstein supergravities.

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