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Canonical quantization of massive symmetric rank-two tensor in string theory

机译:串理论中大规模对称秩两张张量的规范量化

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摘要

The canonical quantization of a massive symmetric rank-two tensor in string theory, which contains two Stueckelberg fields, was studied. As a preliminary study, we performed a canonical quantization of the Proca model to describe a massive vector particle that shares common properties with the massive symmetric rank-two tensor model. By performing a canonical analysis of the Lagrangian, which describes the symmetric rank-two tensor, obtained by Siegel and Zwiebach (SZ) from string field theory, we deduced that the Lagrangian possesses only first class constraints that generate local gauge transformation. By explicit calculations, we show that the massive symmetric rank-two tensor theory is gauge invariant only in the critical dimension of open bosonic string theory, i.e., d = 26. This emphasizes that the origin of local symmetry is the nilpotency of the Becchi-Rouet-Stora-Tyutin (BRST) operator, which is valid only in the critical dimension. For a particular gauge imposed on the Stueckelberg fields, the gauge-invariant Lagrangian of the SZ model reduces to the Fierz-Pauli Lagrangian of a massive spin-two particle. Thus, the Fierz-Pauli Lagrangian is a gauge-fixed version of the gauge-invariant Lagrangian for a massive symmetric rank-two tensor. By noting that the Fierz-Pauli Lagrangian is not suitable for studying massive spin-two particles with small masses, we propose the transverse-traceless (TT) gauge to quantize the SZ model as an alternative gauge condition. In the TT gauge, the two Stueckelberg fields can be decoupled from the symmetric rank-two tensor and integrated trivially. The massive spin-two particle can be described by the SZ model in the TT gauge, where the propagator of the massive spin-two particle has a well-defined massless limit. (C) 2020 The Authors. Published by Elsevier B.V.
机译:研究了包含两个斯蒂克尔伯格领域的大规模对称秩两张张量的规范量化。作为初步研究,我们执行了PROCA模型的规范量化,以描述一种与大规模对称秩两种张量模型共享共同特性的巨大载体粒子。通过对Lagrangian进行规范分析,该分析描述由Siegel和Zwiebach(SZ)从字符串场理论获得的对称级别 - 两个张量,我们推导出拉格朗日只拥有生成局部仪表变换的第一类约束。通过显式计算,我们表明大规模对称秩两张张量理论仅在开放振荡弦理论的临界维度中不变量,即D = 26。这强调了局部对称的起源是BECCHI的零能力Rouet-Stora-Tyutin(BRST)操作员仅在关键方面有效。对于在斯图克尔伯格领域施加的特定规格,SZ模型的仪表不变拉格朗日减少到巨大的旋转两种粒子的Fierz-Pauli Lagrangian。因此,Fierz-Pauli Lagrangian是一个规则固定版的仪表 - 不变拉格朗日,用于大量对称秩两张张量。通过注意到Fierz-Pauli Lagrangian不适合研究具有小群众的巨大旋转两颗颗粒,我们提出了横向无痕(TT)仪表以将SZ模型量化为替代规范状态。在TT仪表中,两个斯图克尔伯格领域可以从对称秩两张张量分离并陷入困境。巨大的旋转两种粒子可以通过TT计中的Sz模型描述,其中批量自旋 - 两个颗粒的传播器具有明确定义的无麻环。 (c)2020作者。由elsevier b.v出版。

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