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Quantum Cosmological Scenarios of Brans-Dicke Gravity in Einstein and Jordan Frames

机译:爱因斯坦和乔丹框架中麸皮的量子宇宙学情景

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摘要

The Hamiltonian of any quantum cosmological model must obey some conditions in order to be self-adjoint or to admit self-adjoint extensions. We consider the self-adjoint character of the Hamiltonian resulting from the Brans-Dicke theory, both in Einstein and Jordan frames. In both cases we find the wave-function solutions in order to obtain concrete predictions for the evolution of the Universe. We show that the specific cosmological scenarios obtained depend very weakly on the conditions of having a self-adjoint operator. The problem of equivalence between the Einstein and Jordan frames is considered, and it is shown that this equivalence implies a specific ordering parameter as well as a particular choice of the physical variables.
机译:任何量子宇宙学模型的哈密顿人必须遵守一些条件,以便自伴随或承认自伴随的延期。 我们考虑了汉尔顿中汉尔顿人的自伴剧性质,这是由爱因斯坦和乔丹框架中的砖块 - Dicke理论引起的。 在这两种情况下,我们发现波浪功能解决方案,以获得对宇宙的演变的具体预测。 我们表明,获得的特定宇宙学情景在具有自伴随运营商的条件下非常弱。 考虑了EINSTEIN与JORDAN帧之间的等价问题,并显示了该等价意味着特定的排序参数以及物理变量的特定选择。

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