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Constrained dynamics of two interacting relativistic particles in the Faddeev-Jackiw symplectic framework

机译:Faddeev-Jackiw杂交框架中两个相互作用粒子的约束动力学

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摘要

The Faddeev-Jackiw symplectic formalism for constrained systems is applied to analyze the dynamical content of a model describing two massive relativistic particles with interaction, which can also be interpreted as a bigravity model in one dimension. We systematically investigate the nature of the physical constraints, for which we also determine the zero-modes structure of the corresponding symplectic matrix. After identifying the whole set of constraints, we find out the transformation laws for all the set of dynamical variables corresponding to gauge symmetries, encoded in the remaining zero modes. In addition, we use an appropriate gauge-fixing procedure, the conformal gauge, to compute the quantization brackets (Faddeev-Jackiw brackets) and also obtain the number of physical degree of freedom. Finally, we argue that this symplectic approach can be helpful for assessing physical constraints and understanding the gauge structure of theories of interacting spin-2 fields.
机译:用于约束系统的Faddeev-Jackiw辅作形式主义用于分析描述两个具有相互作用的巨大相对论粒子的模型的动态含量,这也可以在一个维度中解释为BigRavity模型。 我们系统地研究了物理限制的性质,我们还确定了相应的辛矩阵的零模式结构。 在识别整个约束后,我们发现对应于含量对称的所有动态变量集的转换规律,在剩余的零模式中编码。 此外,我们使用适当的仪表固定程序,保形规格,计算量化支架(Faddeev-jackiw括号)并获得自由度的数量。 最后,我们认为这种辛的方法可以有助于评估物理限制并理解互动旋转2个字段的理论的仪表结构。

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