from    
to    
search  

 


Fast single-shot imaging of individual ions and Rydberg superatoms vialong-ra...
高比能锂电池电解液设计及机理研究
卫健学术沙龙:公共卫生视角下的疫苗:疾病负担及疫苗犹豫
清华2024高分子前沿讲座:靶向分子链构象的聚合物结构与性能调控
报告题目:
Quantum Dynamics of Inflation
 报告人:
Cheng Chin
James Franck institute, Enrico Fermi institute, and Department 
of Physics, University of Chicago
报告时间:
2017-03-24 10:00
报告地点:
物理系C302报告厅
主办单位:
物理系低维量子物理国家重点实验室 杰出学者讲座
  简介:
  简介:
摘要:
   Phase transitions are both ubiquitous and fascinating.  Snow from the sky, a result of a phase transition, is run-of-the-mill in Chicago; however, we remain intrigued when realizing that the beautiful crystals of a snow flake, millimeter in size, grows from the molecular structure at the nano-meter scale. Beyond classical systems, an exponential growth of new symmetry across a phase transition, called inflation, reaches frontier of research on quantum many-body dynamics, as well as in the evolution of early universe.
   Based on a cesium Bose-Einstein condensate driven across a quantum phase transition, we have observed in the past years a series of interesting phenomena: emergence of topological defects (domain walls), exotic excitations (rotons), as well as the scaling symmetry of temporospatial correlations (Kibble-Zurek mechanism). A fundamental question I will address in this talk is: Is inflation a symmetry-breaking process that follows the second law of thermodynamics, or a quantum coherent process that is unitary and reversible?
Bio: 
   Cheng Chin has established the first research group devoted to studying ultracold atoms and molecules at the University of Chicago. Chin’s experiments are designed to achieve temperatures just billionths of a degree above absolute zero (minus 459.67 degrees Fahrenheit). Much of his research focuses on how ultracold molecules form a superfluid, a new state of matter that exists only at ultralow temperatures. Superfluids exhibit characteristics distinctively different from the solids, liquids and gases that dominate everyday life. Chin also uses ultracold technology to simulate the physics of the universe in the first moments following the big bang, and for the development of quantum computers. His honors include a Humboldt Research Fellowship and the American Physical Society's I.I. Rabi Prize.
 
今日相关信息
材料院《材料科学论坛》:New domain sc...
材料院《材料科学论坛》:Materials Desi...
Probing Cosmic-ray in the Inner Galax...
环境学术沙龙第331期:Measurement of At...
Web of Science 核心数据库的检索与利用
 
同类别相关信息
学堂班系列讲座:“从分子论向聚集体论的...
物理系colloquium: 基准钟研究及秒定义...
理学院科学之美讲坛:Half-quantized ...
Explore dark matter by gravitationa...
理学院科学之美讲坛:从记录片“天空之河...
学术活动