论文标题
宇宙岛的电路复杂性
Circuit Complexity From Cosmological Islands
论文作者
论文摘要
最近,在各种理论著作中,在恢复具有量子极端岛屿蒸发的黑洞的众所周知的页面曲线方面取得了进步,该曲线提议解决与单位性问题有关的长期黑洞信息损失问题。在本文中,在本文中,我们研究了量子极端岛的存在(或不存在)在负面(或积极的)宇宙学恒定的情况下(或不存在),并在Friedmann-Lema $ \ hat {I} $ tre-Robertson-Walker(flrw)的背景下进行辐射,即时空,即在Atti and Issters in Atti and sotter site andi-sotter sotter andi-sotter sotter andi-sotter sotter and sotter sotters and so)因此(1,4)等法分别。在不使用任何重力模型的任何明确细节的情况下,我们研究了使用挤压状态形式主义的FLRW时空时期的上述两种情况的尺度因子的动态宇宙学解决方案的行为。通过研究宇宙电路的复杂性,超时有序的相关器和挤压状态模式的纠缠熵,我们在不同的参数空间中得出了这些措施的非及时性。它们在不同参数空间中的特征非常不同,这表明它们依赖于所考虑的模型的参数。
Recently in various theoretical works, path-breaking progress has been made in recovering the well-known Page Curve of an evaporating black hole with Quantum Extremal Islands, proposed to solve the long-standing black hole information loss problem related to the unitarity issue. Motivated by this concept, in this paper, we study cosmological circuit complexity in the presence (or absence) of Quantum Extremal Islands in the negative (or positive) Cosmological Constant with radiation in the background of Friedmann-Lema$\hat{i}$tre-Robertson-Walker (FLRW) space-time i.e the presence and absence of islands in anti-de Sitter and the de Sitter spacetime having SO(2, 3) and SO(1, 4) isometries respectively. Without using any explicit details of any gravity model, we study the behaviour of the circuit complexity function with respect to the dynamical cosmological solution for the scale factors for the above-mentioned two situations in FLRW space-time using squeezed state formalism. By studying the cosmological circuit complexity, Out-of-Time Ordered Correlators, and entanglement entropy of the modes of the squeezed state, in different parameter spaces, we conclude the non-universality of these measures. Their remarkably different features in the different parameter spaces suggest their dependence on the parameters of the model under consideration.