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首页> 外文期刊>Physics Letters, B. Nuclear Physics and High Energy Physics >Solution of the noncanonicity puzzle in General Relativity: A new Hamiltonian formulation
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Solution of the noncanonicity puzzle in General Relativity: A new Hamiltonian formulation

机译:广义相对论中非经典难题的解答:一种新的哈密顿公式

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摘要

We study the transformation leading from Arnowitt, Deser, Misner (ADM) Hamiltonian formulation of General Relativity (GR) to the ΓΓ metric Hamiltonian formulation derived from the Lagrangian density which was firstly proposed by Einstein. We classify this transformation as gauged canonical - i.e. canonical modulo a gauge transformation. In such a study we introduce a new Hamiltonian formulation written in ADM variables which differs from the usual ADM formulation mainly in a boundary term firstly proposed by Dirac. Performing the canonical quantization procedure we introduce a new functional phase which contains an explicit dependence on the fields characterizing the 3+1 splitting. Given a specific regularization procedure our new formulation privileges the symmetric operator ordering in order to: have a consistent quantization procedure, avoid anomalies in constraints algebra, be equivalent to the Wheeler-DeWitt (WDW) quantization. Furthermore we show that this result is consistent with a path-integral approach.
机译:我们研究了从广义相对论(GR)的Arnowitt,Deser,Misner(ADM)哈密顿公式到由爱因斯坦首先提出的拉格朗日密度派生的ΓΓ度量哈密顿公式的转换。我们将此变换归类为规范规范-即规范规范规范变换。在这样的研​​究中,我们引入了一种新的用ADM变量编写的汉密尔顿公式,该公式不同于通常的ADM公式,主要在于Dirac首先提出的边界项。执行规范的量化过程,我们引入了一个新的功能阶段,该阶段包含对表征3 + 1分裂的场的明确依赖。给定特定的正则化程序,我们的新公式化对对称算子进行排序,以:具有一致的量化程序,避免约束代数中的异常,等效于Wheeler-DeWitt(WDW)量化。此外,我们证明了该结果与路径积分方法是一致的。

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