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Simplicity constraints: A 3D toy model for loop quantum gravity

机译:简单限制:环路量子重力的3D玩具模型

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In loop quantum gravity, tremendous progress has been made using the Ashtekar-Barbero variables. These variables, defined in a gauge fixing of the theory, correspond to a parametrization of the solutions of the so-called simplicity constraints. Their geometrical interpretation is however unsatisfactory as they do not constitute a space-time connection. It would be possible to resolve this point by using a full Lorentz connection or, equivalently, by using the self-dual Ashtekar variables. This leads however to simplicity constraints or reality conditions which are notoriously difficult to implement in the quantum theory. We explore in this paper the possibility of using completely degenerate actions to impose such constraints at the quantum level in the context of canonical quantization. To do so, we define a simpler model, in 3D, with similar constraints by extending the phase space to include an independent vielbein.We define the classical model and show that a precise quantum theory by gauge unfixing can be defined out of it, completely equivalent to the standard 3D Euclidean quantum gravity. We discuss possible future explorations around this model as it could help as a stepping stone to define full-fledged covariant loop quantum gravity.
机译:在环状量子重力中,使用Ashtekar-Barbero变量进行了巨大进展。这些变量在理论的仪表固定中定义,对应于所谓的简单限制的解决方案的参数化。然而,它们的几何解释是不令人满意的,因为它们不构成空时连接。可以通过使用完整的Lorentz连接或通过使用自二种Ashtekar变量来解决这一点。然而,这导致了在量子理论中难以实施的简单限制或现实条件。我们在本文中探索了在规范量化的背景下使用完全退化的行动来强加在量子水平上施加这种约束。为此,我们通过扩展相位空间以包括独立的Vielbein来定义一个更简单的模型,其具有类似的约束。我们定义了经典模型,并显示了通过仪表未固定的精确量子理论。相当于标准的3D欧几里德量子重力。我们讨论了此模型周围可能的探索,因为它可以帮助定义全剥落的协变环量子重力。

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