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北京工业大学高能组

cosmology and quantum complexity

by Dr 爱晨 李

Asia/Shanghai
318 (shu'li'l)

318

shu'li'l

北京市朝阳区平乐园100hao
Description
摘要:We calculate the cosmological complexity under the framework of scalar curvature perturbations for a K-essence model with constant, potential. In particular, the squeezed quantum states are defined by acting a two-mode squeezed operator which is characterized by squeezing parameters rk and øk on vacuum state. The evolution of these squeezing parameters are governed by the Schrödinger equation, in which the Hamiltonian operator is derived from the cosmological perturbative action. With aid of the solutions of rk and øk, one can calculate the quantum circuit complexity between unsqueezed vacuum state and squeezed quantum states via the wave-function approach. One advantage of K-essence is that it allows us to explore the effects of varied sound speeds on evolution of cosmological complexity. Besides, this model also provides a way for us to distinguish the different cosmological phases by extracting some basic information, like the scrambling time and Lyapunov exponent etc, from the evolution of cosmological complexity. 简介:李爱晨 University of Barcelona (ICCUB)