论文标题
雪人白皮书:黑洞的量子方面和时空的出现
Snowmass White Paper: Quantum Aspects of Black Holes and the Emergence of Spacetime
论文作者
论文摘要
黑洞为量子重力的时空结构提供了一个窗口。最近,已经计算出霍金辐射中包含的量子信息,从而验证了黑洞蒸发及量子机械单位性的一致性的关键方面。 该计算在于从边界全息描述中理解散装时空的出现方面的最新进展至关重要。时空虫洞在理解该结果的基础方面发挥了重要作用,在这种情况下和其他情况下,对这种虫洞的精确研究是通过发展低维模型的发展来实现的。 在这份白皮书中,我们回顾了这些发展,并描述了该主题中一些深入的问题。其中包括黑洞内部的性质,量子宇宙学的潜在应用,黑洞精细结构的重力解释以及与量子信息和实验室量子模拟的进一步联系。
Black holes provide a window into the microscopic structure of spacetime in quantum gravity. Recently the quantum information contained in Hawking radiation has been calculated, verifying a key aspect of the consistency of black hole evaporation with quantum mechanical unitarity. This calculation relied crucially on recent progress in understanding the emergence of bulk spacetime from a boundary holographic description. Spacetime wormholes have played an important role in understanding the underpinnings of this result, and the precision study of such wormholes, in this and other contexts, has been enabled by the development of low-dimensional models of holography. In this white paper we review these developments and describe some of the deep open questions in this subject. These include the nature of the black hole interior, potential applications to quantum cosmology, the gravitational explanation of the fine structure of black holes, and the development of further connections to quantum information and laboratory quantum simulation.