在开放量子系统上进行最佳控制,并应用于非康登光感应的电子转移动态
Zi-Fan Zhu1, Yu Su1, Yao Wang1
1Hefei National Laboratory, University of Science and Technology of China, Hefei, Anhui 230088, China and Hefei National Research Center for Physical Sciences at the Microscale and Department of Chemical Physics, University of Science and Technology of China, Hefei, Anhui 230026, China.
The Journal of chemical physics
|October 22, 2025
概括
我们为开放量子系统及其环境开发了一种新的最佳控制理论. 这种方法通过操纵环境,精确控制量子动力学,包括光诱导的电子转移.
科学领域:
- 量子物理学的量子物理学
- 化学动力学 化学动力学
- 开放的量子系统是开放的.
背景情况:
- 最佳控制理论对于操纵量子系统至关重要.
- 开放的量子系统与它们的环境相互作用,导致复杂的动态.
- 散散子理论提供了散散量子系统的准确描述.
研究的目的:
- 为开放量子系统及其环境开发一个最佳的控制理论.
- 将这个理论应用于光诱导的电子转移在凝聚相.
- 为了证明对环境有针对性的控制,以提高量子动力学.
主要方法:
- 利用消散子理论来准确地描述系统和环境.
- 利用消散子相空间代数来控制战略.
- 将理论应用于非康登光电诱导的电子转移.
主要成果:
- 开发了一种理论策略,用于同时控制系统和环境.
- 该方法成功地证明了光诱导电子转移的环境向控制.
- 完全考虑了非扰动性和非马科维效应.
结论:
- 最佳控制理论可以有效地操纵开放量子系统的动态.
- 针对环境模式为控制量子过程提供了一条新的途径.
- 这种方法为通过极化环境操纵量子动力学提供了洞察力.
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