Developments of the Relativistic Bohm-Poisson Equation and Dark Energy

C. Perelman
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引用次数: 2

Abstract

The nonlinear and novel Bohm-Poisson-Schrödinger equation proposed by us is studied further. It has solutions leading to repulsive gravitational behavior. An exact analytical expression for the observed vacuum energy density is obtained. Further results are provided which include two possible extensions of the Bohm-Poisson equation to the full relativistic regime. Two specific solutions to the novel Relativistic Bohm-Poisson equation (associated to a real scalar field) are provided encoding the repulsive nature of dark energy. One solution leads to an exact cancellation of the cosmological constant, but an expanding decelerating cosmos; while the other solution leads to an exponential accelerated cosmos consistent with a de Sitter phase, and whose extremely small cosmological constant is Λ = 3 R2 H , consistent with current observations. We conclude with some final remarks about Weyl’s geometry.
相对论性玻松方程和暗能量的发展
进一步研究了我们提出的非线性新颖Bohm-Poisson-Schrödinger方程。它有导致排斥引力行为的解。得到了观测到的真空能量密度的精确解析表达式。提供了进一步的结果,其中包括两种可能的扩展庞泊松方程到完全相对论状态。给出了新的相对论玻松方程(与实标量场相关)的两个具体解,编码了暗能量的排斥性。一种解决方案导致宇宙常数的精确消去,但宇宙正在膨胀减速;而另一种解则导致了与德西特相一致的指数加速宇宙,其极小的宇宙常数为Λ = 3 R2 H,与目前的观测结果一致。最后,我们对Weyl几何作了最后的评述。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Progress of Theoretical Physics
Progress of Theoretical Physics 物理-物理:综合
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4-8 weeks
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