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首页> 外文期刊>The Journal of Chemical Physics >Optimal control of rotational motions in dissipative media
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Optimal control of rotational motions in dissipative media

机译:耗散介质中旋转运动的最优控制

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摘要

We apply optimal control theory to explore and manipulate rotational wavepacket dynamics subject to a dissipative environment. In addition to investigating the extent to which nonadiabatic alignment can make a useful tool in the presence of decoherence and population relaxation, we use coherent rotational superpositions as a simple model to explore several general questions in the control of systems interacting with a bath. These include the extent to which a pure state can be created out of a statistical ensemble, the degree to which control theory can develop superposition states that resist dissipation, and the nature of environments that prohibits control. Our results illustrate the information content of control studies regarding the dissipative properties of the bath and point to the strategies that optimize different targets in wavepacket alignment in nonideal environments. As an interesting aside, the method is used to illustrate the limit where the coherence-based approach to molecular alignment converges to traditional incoherent approaches. (C) 2008 American Institute of Physics.
机译:我们应用最优控制理论来探索和操纵在耗散环境下的旋转波包动力学。除了研究在非相干性和总体弛豫的情况下非绝热比对可以成为有用工具的程度外,我们还将相干旋转叠加作为简单模型来探讨与浴液相互作用的系统控制中的几个一般性问题。这些因素包括可以从统计整体中创建纯状态的程度,控制理论可以开发出抵抗耗散的叠加状态的程度以及禁止控制的环境的性质。我们的结果说明了有关浴的耗散特性的对照研究的信息内容,并指出了在非理想环境中优化波包对准中不同目标的策略。除了有趣的是,该方法还用于说明极限,在这种极限下,基于相干性的分子比对方法收敛于传统的非相干方法。 (C)2008美国物理研究所。

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