论文标题
通过表面匹配有效的量子粉尘塌陷
Effective Quantum Dust Collapse via Surface Matching
论文作者
论文摘要
尽管量子重力校正了黑洞的模型,但形成黑洞的物质的命运仍然是一个空旷的问题。提出了在循环量子重力(LQG)模型中,通过黑白孔过渡来解决黑洞中心的经典奇异性,但忽略了倒塌过程。在其他量子重力方法中,这种情况相似,那里有永恒的非单明模型。在本文中,提出了一种将这些永恒模型推广到通过表面匹配到动态塌陷模型的策略。假设1)倒塌物质外静态量子黑洞时空的有效性,2)崩溃物质的均匀性,3)物质表面的可差度可确定时空的动力学独特的动力学。有人认为,这些假设类似于无压力灰尘的崩溃,从而概括了Oppenheimer-Snyder-Datt模型,尽管不必假定此问题的精确模型。在这种方法中,鹰辐射被系统地忽略了。尽管该方案是无关的,但针对LQG提出的,针对弹跳的黑洞空位的弹跳,对弹跳黑洞的空位进行了一致讨论。此外,对于最近的模型[1],可以明确求解方程,并实现了崩溃的全局时空图片。详细讨论了因果结构,并构建了Penrose图。崩溃物质的轨迹是从内部和外部观察者的角度完全构建的。一般分析表明,此问题正在崩溃和重新扩展,并对角线横穿penrose图。这样,几种LQG模型提出的无限塔的无限塔通常就不会切除。可以回答有关内外观察者崩溃不同时间尺度的问题。
The fate of matter forming a black hole is still an open problem, although models of quantum gravity corrected black holes are available. In loop quantum gravity (LQG) models were presented, which resolve the classical singularity in the centre of the black hole by means of a black-to-white hole transition, but neglect the collapse process. The situation is similar in other quantum gravity approaches, where eternal non-singular models are available. In this paper, a strategy is presented to generalise these eternal models to dynamical collapse models by surface matching. Assuming 1) the validity of a static quantum black hole spacetime outside the collapsing matter, 2) homogeneity of the collapsing matter, and 3) differentiability at the surface of the matter fixes the dynamics of the spacetime uniquely. It is argued that these assumptions resemble a collapse of pressure-less dust and thus generalises the Oppenheimer-Snyder-Datt model, although no precise model of the matter has to be assumed. Hawking radiation is systematically neglected in this approach. The junction conditions and the spacetime dynamics are discussed generically for bouncing black hole spacetimes, as proposed by LQG, although the scheme is approach independent. Further, the equations are explicitly solved for the recent model [1] and a global spacetime picture of the collapse is achieved. The causal structure is discussed in detail and the Penrose diagram is constructed. The trajectory of the collapsing matter is completely constructed from an inside and outside observer point of view. The general analysis shows that the matter is collapsing and re-expanding and crosses the Penrose diagram diagonally. This way the infinite tower of Penrose diagrams, as proposed by several LQG models, is generically not cut out. Questions about different timescales of the collapse for in- and outside observers can be answered.