Trout Aaron D
Department of Mathematics, Chatham University, Pittsburgh, Pennsylvania, United States of America.
PLoS One. 2013 Dec 3;8(12):e80826. doi: 10.1371/journal.pone.0080826. eCollection 2013.
Dark energy accounts for most of the matter-energy content of our universe, yet current theories of its origin rely on radical physical assumptions such as the holographic principle or controversial anthropic arguments. We give a better motivated explanation for dark energy, claiming that it arises from a small negative scalar-curvature present even in empty spacetime. The vacuum has this curvature because spacetime is fundamentally discrete and there are more ways for a discrete geometry to have negative curvature than positive. We explicitly compute this effect using a variant of the well known dynamical-triangulations (DT) model for quantum gravity. Our model predicts a time-varying non-zero cosmological constant with a current value, [Formula: see text] in natural units, in agreement with observation. This calculation is made possible by a novel characterization of the possible DT action values combined with numerical evidence concerning their degeneracies.
暗能量占我们宇宙中物质 - 能量含量的大部分,但目前关于其起源的理论依赖于诸如全息原理或有争议的人择论证等激进的物理假设。我们对暗能量给出了一个更有充分依据的解释,声称它源于即使在空时空中也存在的微小负标量曲率。真空具有这种曲率是因为时空从根本上是离散的,并且离散几何具有负曲率的方式比正曲率的方式更多。我们使用著名的量子引力动态三角剖分(DT)模型的一个变体明确计算了这种效应。我们的模型预测了一个随时间变化的非零宇宙学常数,在自然单位下其当前值为[公式:见文本],与观测结果一致。通过对可能的DT作用值的一种新颖表征以及关于它们简并性的数值证据,使得这种计算成为可能。