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Solving Gauge lnvariant Systems without Gauge Fixing: The Physical Physical Projector in 0+1 Dimensional Theories

机译:在没有量具固定的情况下解决量具不变系统:0 + 1维理论中的物理投影仪

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摘要

The projector onto gauge invariant physical states was recently constructed for arbitrary constrained systems. This approach, which does not require gauge fixing nor any additional degrees of freedom beyond the original ones-two characteristic features of all other available methods for quantising constrained dynamics-is put to work in the context of a general class of quantum mechanical gauge invariant systems. The cases of SO(2) and SO(3) gauge groups are considered specifically, and a comprehensive understanding of the corresponding physical spectra is achieved in a straightforward manner, using only standard methods of coherent states and group theory which are directly amenable to generalisation to other Lie algebras. Results extend considerably the few examples available in the literature from much more subtle and delicate analyses implying gauge fixing and the characterization of modular space.
机译:最近,针对任意受约束系统构造了投影仪,使其具有标尺不变的物理状态。这种方法不需要量具的固定,也不需要任何额外的自由度,而在原始量子力学上,这是所有其他可用的用于量化受约束动力学的方法的两个特征。 。特别考虑了SO(2)和SO(3)规范群的情况,并且仅使用相干态和群论的标准方法(直接适用于一般化),以直接的方式获得了对相应物理光谱的全面理解。到其他李代数。结果大大扩展了文献中的一些示例,这些示例来自更微妙和微妙的分析,这意味着仪表的固定和模块化空间的特征。

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