Husain Viqar, Kelly Jarod George, Santacruz Robert, Wilson-Ewing Edward
Department of Mathematics and Statistics, University of New Brunswick, Fredericton, New Brunswick E3B 5A3, Canada.
Phys Rev Lett. 2022 Mar 25;128(12):121301. doi: 10.1103/PhysRevLett.128.121301.
We study the quantum gravitational collapse of spherically symmetric pressureless dust. Using an effective equation derived from a polymer quantization in the connection-triad phase space variables of general relativity, we find numerically, for a variety of initial dust configurations, that (i) trapped surfaces form and disappear as an initially collapsing density profile evolves into an outgoing shock wave; (ii) black hole lifetime is proportional to the square of its mass; and (iii) there is no mass inflation at inner apparent horizons. These results provide a substantially different view of black hole formation and subsequent evolution than found from semiclassical analyses.
我们研究球对称无压尘埃的量子引力坍缩。利用从广义相对论的联络 - 三重度规相空间变量中的聚合物量子化导出的有效方程,对于各种初始尘埃构型,我们通过数值计算发现:(i)随着初始坍缩密度分布演化为向外的激波,捕获面形成并消失;(ii)黑洞寿命与其质量的平方成正比;(iii)在内部表观视界处不存在质量暴胀。这些结果提供了一个与半经典分析所发现的截然不同的黑洞形成及后续演化观点。