论文标题

分支切割宇宙学和Bekenstein标准

Branch-Cut Cosmology and the Bekenstein Criterion

论文作者

Pacheco, José A. de Freitas, Vasconcellos, César A. Zen, Hess, Peter O., Hadjimichef, Dimiter, Bodmann, Benno

论文摘要

在这项贡献中,我们解决了Bekenstein标准在分支切割宇宙学中的含义。根据Bekenstein的标准包装能量和熵的不可能使分支切割宇宙学的过渡阶段非常奇特,在原始宇宙的收缩和扩展阶段或过渡区域之间的拓扑飞跃或类似于蠕虫的过渡区域的过渡阶段,在形式上围绕着螺旋的旋转型在旋转的螺旋上,围绕着螺旋的旋转型,在旋转的螺旋上围绕着一个旋转的分支。奇异性意味着时空无法平稳。分支切割的宇宙学可以通过灯芯旋转旋转,将纯净空间配置完全开始,该旋转将假想的时间组成替换为温度,宇宙学时间。

In this contribution we address the implications of the Bekenstein Criterion in the branch-cut cosmology. The impossibility of packaging energy and entropy according to the Bekenstein Criterion in a finite size makes the transition phase of the branch-cut cosmology very peculiar, imposing a topological leap between the contraction and expansion phases of the primordial universe or a transition region similar to a wormhole, with space-time shaping itself topologically in the format of a helix-format around a branch point. Singularity means that there is no way for space-time to begin smoothly. The branch-cut cosmology alternatively proposes a non-temporal beginning at all, a pure space configuration, through a Wick rotation which replaces the imaginary time component by the temperature, the cosmological time.

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