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The apparent (gravitational) horizon in cosmology

机译:宇宙学中的明显(引力)地平线

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In general relativity, a gravitational horizon (more commonly known as the “apparent horizon”) is an imaginary surface beyond which all null geodesics recede from the observer. The Universe has an apparent (gravitational) horizon, but unlike its counterpart in the Schwarzschild and Kerr metrics, it is not static. It may eventually turn into an event horizon—an asymptotically defined membrane that forever separates causally connected events from those that are not—depending on the equation of state of the cosmic fluid. In this paper, we examine how and why an apparent (gravitational) horizon is manifested in the Friedmann–Robertson–Walker metric, and why it is becoming so pivotal to our correct interpretation of the cosmological data. We discuss its observational signature and demonstrate how it alone defines the proper size of our visible Universe. In so doing, we affirm its physical reality and its impact on cosmological models.
机译:在一般相对性中,引力地平线(更常见的称为“表观地平线”)是虚构的表面,其所有空的大动测验都从观察者中取出。 宇宙有一个明显的(引力)地平线,但与Schwarzschild和Kerr指标的对应物不同,它不是静态的。 它可能最终转变为事件地平线 - 一种渐近定义的膜,其永远将因果关系与不依赖于宇宙液的状态的等式的那些分离。 在本文中,我们研究了一个明显(引力)地平线在Friedmann-Robertson-Walker度量中表现出的方式以及为何,以及为什么对我们对宇宙学数据的正确解释变得如此关键。 我们讨论其观察签名,并展示它是如何单独定义我们可见宇宙的适当大小。 在这样做时,我们肯定了它的物理现实及其对宇宙模型的影响。

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