Optimal control of system dynamics in non-Markovian open quantum systems
发布日期:2022-12-05
作者:
编辑:瞿磊
来源:兰州理论物理中心
主讲人:王兆明 教授(中国海洋大学)
题目:Optimal control of system dynamics in non-Markovian open quantum systems
时间:2022年12月13日上午11:00
会议ID:(腾讯会议)572-728-131
联系人:吴威
报告摘要:
Accurate control of a quantum system is crucial for performing quantum tasks, especially in a noisy environment. In this report, taking adiabatic evolution or state transfer as examples, we show that effective adiabatic speedup or almost exact state transfer can be obtained by optimal control in open quantum system. Adiabatic quantum computation requires keeping a system in a particular eigenstate. However, unwanted transitions can occur due to the interaction of the system with a noisy environment. By carefully choosing the pulse intensity and duration, an accelerated adiabatic path can be obtained for both a weak-coupling and a strong non-Markovian environment. In the second part, we report the feasibility of using an effective pulse control methods to realize an almost exact state transmission through a uniform chain where the communication channel is immersed in a quantum environment. The results show that the memory effects of the environment can support an effective transmission control that can be boosted under a non-Markovian environment.
个人简介:
王兆明,中国海洋大学教授。现任物理与光电工程学院副院长。北京理工大学与美国南伊利诺伊大学联合培养博士,美国斯蒂文斯理工学院、新加坡国立大学、西班牙巴斯克大学访问学者。npj Quantum Information、PRL、PRA/B、SR、JPB、PLA、EPJD等学术期刊审稿人。长期从事固态量子信息的基础理论研究,特别是基于自旋系统的量子通信、绝热量子计算、以及开放系统的动力学演化等方向的研究。在Phys. Rev. Lett.等学术期刊发表SCI论文50余篇。研究成果获山东省高等学校优秀科研成果奖。承担国家自然科学基金,山东省自然科学基金等科研项目多项。