from    
to    
search  

 


【数学之美-杰出学者讲坛】2024年第3期 ||Optimal transport and Monge-Ampere equ...
好莱坞数据专家和制作逻辑的数据重塑
长视频平台趋势与洞察
清华大学材料科学与工程研究院《材料科学论坛》:机器学习辅助合金理性设计
报告题目:
物理系colloquium: Measurement-Induced Entanglement Phase Transition inRandom Bilocal Circuits
 报告人:
Xiao-Liang Qi
Stanford University
报告时间:
2022-03-10 16:00
报告地点:
理科楼郑裕彤讲堂
主办单位:
物理系
  简介:

Measurement-induced entanglement phase transitions, caused by the competition between entangling unitary dynamics and disentangling projective measurements, have been studied in various random circuit models in recent years. In this paper, we study the dynamics of averaged purity for a simple N-qudit Brownian circuit model with all-to-all random interaction and measurements. In the large-N limit, our model is mapped to a one-dimensional quantum chain in the semi-classical limit, which allows us to analytically study critical behaviors and various other properties of the model. We show that there are two phases distinguished by the behavior of the total system entropy in the long time. In addition, the two phases also have distinct subsystem entropy behavior. The low measurement rate phase has a first-derivative discontinuity in the behavior of second Renyi entropy versus subsystem size, similar to the "Page curve" of a random state, while the other phase has a smooth entropy curve.

About the speaker:  Xiao-Liang Qi finished his Ph. D. at the Institute for Advanced Study, Tsinghua University in 2007. He did postdoctoral research at Stanford University and UC Santa Barbara, and joined the faculty of Stanford University in 2010. In recent years, he has been mainly working on the relation of quantum information, quantum gravity and quantum many-body physics. He has also worked on topological states of matter and strongly correlated systems.


今日相关信息
【粒子物理与宇宙学理论报告】New devel...
天文系Colloquium:From planets to bin...
全球变化科学紫荆论坛第378期:Understa...
科研起步与研究生培养
 
同类别相关信息
Large N theory of critical Fermi su...
Temporal Entanglement in Dual-Unit...
Pair density wave state and higher ...
物理系colloquium: Unveiling Microsc...
Atomic Precision in Quantum Nanosci...
学术活动