论文标题
社论:全息二元性的新边界 - 从量子复杂性和黑洞到流体动力学和中子星星
Editorial: New Frontiers in Holographic Duality -- From quantum complexity and black holes to hydrodynamics and neutron stars
论文作者
论文摘要
在过去的25年中,全息二元性彻底改变了我们对量表理论,量子多体系统以及量子黑洞的理解。这个局部问题是有关全息二元性基础知识的最新进展的评论文章的集合及其应用,特别关注了它是跨学科的一些领域。目的是向相关现象学和其他理论领域(例如量子信息理论)提供足够的背景,这些研究人员的主要专业知识是量子领域,弦乐和引力,以及对其他领域研究人员的全息概念和方法,因此,广泛的社区可以将这些最新发展的概念和方法掌握在其他领域。与基本方面有关的主题包括了解量子误差校正框架中全息图中的散装时空重建以及解决量子黑洞信息悖论的壮观进步;量子复杂性及其在将全息图与量子信息理论联系起来的基本作用;量子模拟器中的理论和实验进步,用于信息镜像和量子黑色孔中的镜像,以及通过虫洞传送;以及关于虫洞的教学评论。与应用全息相关的主题包括对流体动力吸引子的应用及其现象学意义,中子恒星中QCD物质状态方程的建模,最后估算了对穆恩$ g-2 $理论计算的光线散射的施加贡献。
Over the last twenty five years, holographic duality has revolutionised our understanding of gauge theories, quantum many-body systems and also quantum black holes. This topical issue is a collection of review articles on recent advances in fundamentals of holographic duality and its applications with special focus on a few areas where it is inter-disciplinary to a large measure. The aim is to provide a sufficient background on relevant phenomenology and other theoretical areas such as quantum information theory to researchers whose primary expertise is in quantum fields, strings and gravity, and also the necessary concepts and methods of holography to researchers in other fields, so that these recent developments could be grasped and hopefully further developed by a wider community. The topics relating to fundamental aspects include understanding of bulk spacetime reconstruction in holography in the framework of quantum error correction along with the spectacular advances in resolution of the information paradoxes of quantum black holes; quantum complexity and its fundamental role in connecting holography with quantum information theory; theoretical and experimental advances in quantum simulators for information mirroring and scrambling in quantum black holes, and teleportation via wormholes; and a pedagogical review on wormholes also. The topics related to applied holography include applications to hydrodynamic attractor and its phenomenological implications, modelling of equation of state of QCD matter in neutron stars, and finally estimating hadronic contribution to light-by-light scattering for theoretical computation of the muon's $g-2$.