首页
学校概况
现任领导 学校简介 机构设置 学校标识
师资队伍
教育教学
本科生教育 研究生教育
科学研究
特殊教育
国际交流
国际合作与交流处 港澳台事务办公室
招生就业
本专科生招生 研究生招生 留学生招生 成人教育 学生就业
公共服务
学校标识
当前位置: 首页 >> 正文

学术报告The quench dynamics of Rydberg-dressed bosons in 2D optical lattices

发布时间:2019-11-25


报 告 人:周一稼

主 持 人:王丽丽

时    间:2019年11月26日上午9:00

地    点:长春大学理学院五楼会议室

主办单位:理学院

报告人简介:诺丁汉大学在读博士,研究领域:里德堡原子,冷原子,量子光学,量子多体系统的动力学模拟等。

观点综述:Recent experiments have demonstrated that long-range interactions can be induced by laser dressing ground state atoms to electronically excited Rydberg states. When trapped in optical lattices, this permits us to realize extended Bose-Hubbard models with tunable interactions. In this work, we study quench dynamics of the dressed atoms in a two-dimensional optical lattice. Here, by decreasing the lattice potential height, the tunneling rate increases from a Mott insulator to supersolid and then superfluid phases. Using a Gutzwiller approach, we find a sudden birth of superfluid order parameters after Mott-supersolid phase boundary. However, superfluid order parameter does not increase monotonically due to the supersolid phase as an intermediate state, which is largely affected by long-range interactions. The details of the exotic dynamics can be observed by, e.g., time-of-flight experiments. Our study paves a route to exploring nonequilibrium many-body physics with Rydberg dressed atoms in lattice systems.

上一条:学术报告—大国深度竞争与中国战略抉择

下一条:学术报告—网络文化的历史观