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首页> 外文期刊>Physics Letters, B. Nuclear Physics and High Energy Physics >Quantization of semiclassical gravitation theory in anisotropic spacetime
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Quantization of semiclassical gravitation theory in anisotropic spacetime

机译:各向异性时空中半经典引力理论的量化。

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The renormalized effective action of a free scalar field propagating in the Bianchi type I spacetime is examined. As it contains higher-order derivatives of the metric the Hamiltonian structure of the theory will be changed. Thus, to obtain the self-consistent solution of the semiclassical gravity theory the method of iterative reduction is used to reduce it to a second-order equation. We solve the reduced equation and see that the space anisotropy, which will be smoothed out during the evolution of Universe, may play important role in the dynamics of early Universe. To investigate the behavior of space anisotropy in the early Universe we then quantize the corresponding minisuperspace. The associated Wheeler-DeWitt equation is solved in the WKB approximation and, from the solution, it is seen that the most probable state of the Bianchi type I spacetime is that with a small anistropy. (C) 1997 Elsevier Science B.V.
机译:研究了在Bianchi I型时空中传播的自由标量场的重新归一化有效作用。由于它包含度量的高阶导数,因此该理论的哈密顿结构将发生变化。因此,为了获得半经典引力理论的自洽解,使用迭代约简的方法将其简化为二阶方程。我们求解了简化的方程,发现在宇宙演化过程中将被消除的空间各向异性可能在早期宇宙动力学中发挥重要作用。为了研究早期宇宙中空间各向异性的行为,我们然后量化了相应的微型超空间。相关联的Wheeler-DeWitt方程以WKB近似求解,从该解决方案中可以看出,Bianchi I型时空的最可能状态是人类行为较小。 (C)1997年Elsevier Science B.V.

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