M Guo, ZY Fan, J Jiang, X Liu, B Chen - Physical Review D, 2020 - APS
In this work, we study the circuit complexity for generalized coherent states in thermal systems by adopting the covariance matrix approach. We focus on the coherent thermal (CT) …
H Guo, S Kiorpelidi, XM Kuang, E Papantonopoulos… - Physical Review D, 2020 - APS
We holographically investigate the scalarization in the Einstein-scalar-Gauss-Bonnet gravity with a negative cosmological constant. We find that instability exists for both Schwarzschild …
YS An, T Ji, L Li - Journal of High Energy Physics, 2020 - Springer
A bstract We study the magnetotransport in a minimal holographic setup of a metal-insulator transition in two spatial dimensions. Some generic features are obtained without referring to …
We study the relationship between mixed state entanglement and thermal phase transitions. As a typical example, we compute the holographic entanglement entropy (HEE) …
P Liu, C Niu, ZJ Shi, CY Zhang - Journal of High Energy Physics, 2021 - Springer
A bstract We study the entanglement wedge cross-section (EWCS) in holographic massive gravity theory, in which a first and second-order phase transition can occur. We find that the …
We study the evolution of the holographic entanglement entropy (HEE) and the holographic complexity (HC) after a thermal quench in 1+ 1 dimensional boundary conformal field …
In this paper, we relate the complexity for a holographic state to a simple gravitational object of which the growth rate at late times is equal to temperature times black hole entropy. We …
We study the general time dependence of complexity for holographic states dual to Lovelock black holes using the “complexity equals action” proposal. We observe that at early times …
G Fu, P Liu, H Gong, XM Kuang, JP Wu - Physical Review D, 2021 - APS
We study the holographic information quantities, including the holographic entanglement entropy (HEE), the holographic mutual information (HMI) and the minimum cross section of …