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Minisuperspace model for revised canonical quantum gravity

机译:修正正则量子引力的超空间模型

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摘要

We present a reformulation of the canonical quantization of gravity, as referred to the minisuperspace; the new approach is based on fixing a Gaussian (or synchronous) reference frame and then quantizing the system via the reconstruction of a suitable constraint; then the quantum dynamics is re-stated in a generic coordinates system and it becomes dependent on the lapse function.The analysis follows a parallelism with the case of the non-relativistic particle and leads to the minisuperspace implementation of the so-called kinematical action as proposed in Ref. 1 (here almost coinciding also with the approach presented in Ref. 2).The new constraint leads to a Schrodinger equation for the system, i.e. to non-vanishing eigenvalues for the super-Hamiltonian operator; the physical interpretation of this feature relies on the appearance of a "dust fluid" (non-positive definite) energy density, i.e. a kind of "materialization" of the reference frame.As an example of minisuperspace model, we consider a Bianchi type IX Universe, for which some dynamical implications of the revised canonical quantum gravity are discussed. We also show how, on the classical limit, the presence of the dust fluid can have relevant cosmological issues.Finally we upgrade our analysis by its extension to the generic cosmological solution, which is performed in the so-called long-wavelength approximation. In fact, near the Big-Bang, we can neglect the spatial gradients of the dynamical variables and proceed to implement, in each space point, the same minisuperspace paradigm valid for the Bianchi IX model.
机译:我们提出了对重力的规范化量化的重新定义,称为minisuperspace。新的方法是基于固定高斯(或同步)参考系,然后通过重构合适的约束对系统进行量化。然后将量子动力学重新定义为通用坐标系,并依赖于失效函数。在参考文献中提出。 1(这里几乎也与参考文献2中介绍的方法相吻合)。新约束导致系统的Schrodinger方程,即超哈密顿算子的特征值不变。此功能的物理解释取决于“粉尘流体”(非正定性)能量密度的出现,即参考系的一种“物化”。作为微型超空间模型的一个示例,我们考虑了Bianchi IX型关于宇宙,讨论了修正的经典量子引力的一些动力学含义。我们还展示了在经典极限下尘埃流体的存在如何会引起相关的宇宙问题。实际上,在“大爆炸”附近,我们可以忽略动力学变量的空间梯度,并继续在每个空间点实施对Bianchi IX模型有效的相同微型超空间范例。

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