Erdmenger Johanna, Meyer René, Park Jeong-Hyuck
Max-Planck-Institut für Physik, 80805 München, Germany.
Phys Rev Lett. 2007 Jun 29;98(26):261301. doi: 10.1103/PhysRevLett.98.261301. Epub 2007 Jun 25.
Using a novel, string theory-inspired formalism based on a Hamiltonian constraint, we obtain a conformal mechanical system for the spatially flat four-dimensional Robertson-Walker Universe. Depending on parameter choices, this system describes either a relativistic particle in the Robertson-Walker background or metric fluctuations of the Robertson-Walker geometry. Moreover, we derive a tree-level M theory matrix model in this time-dependent background. Imposing the Hamiltonian constraint forces the spacetime geometry to be fuzzy near the big bang, while the classical Robertson-Walker geometry emerges as the Universe expands. From our approach, we also derive the temperature of the Universe interpolating between the radiation and matter dominated eras.
利用一种基于哈密顿约束的、受弦理论启发的新颖形式体系,我们得到了一个适用于空间平坦的四维罗伯逊 - 沃克宇宙的共形力学系统。根据参数选择,该系统要么描述罗伯逊 - 沃克背景下的相对论粒子,要么描述罗伯逊 - 沃克几何的度规涨落。此外,我们在这个随时间变化的背景下推导了一个树图水平的M理论矩阵模型。施加哈密顿约束会使时空几何在大爆炸附近变得模糊,而随着宇宙膨胀,经典的罗伯逊 - 沃克几何会显现出来。从我们的方法中,我们还推导出了在辐射主导和物质主导时代之间插值的宇宙温度。