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首页> 外文期刊>Journal of physical chemistry letters >Complete Quantum State Selectivity in Cold Molecular Beams Using Deflection-Resistant Dark States in a STIRAP Configuration
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Complete Quantum State Selectivity in Cold Molecular Beams Using Deflection-Resistant Dark States in a STIRAP Configuration

机译:在STIRAP配置中使用抗偏转暗态在冷分子束中完成量子态选择性

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摘要

One of the main goals of chemical dynamics is the creation of molecular beams composed of a single (vibrational, rotational, and magnetic) quantum state of choice. In this Letter, we propose a method to achieve complete quantum state selectivity by producing resistance to electromagnetically induced deflection (EID) and that the state to be selected can be “dialed in” at will. We illustrate the method by showing in detail how to purify thermal beams of the LiRb and IF molecules to yield molecular beams composed of a variety of prechosen single internal quantum states and/or superpositions of such states. We expect that this method will be implemented in all subsequent explorations of the fundamentals of chemical reactions and their control and the use of cold molecules as a vehicle for studying some of the most profound issues of quantum dynamics.
机译:化学动力学的主要目标之一是创建由选择的单个(振动,旋转和磁性)量子态组成的分子束。在这封信中,我们提出了一种通过产生对电磁感应偏转(EID)的电阻来实现完全量子态选择性的方法,并且可以随意“插入”要选择的状态。我们通过详细显示如何纯化LiRb和IF分子的热束以产生由各种预选的单个内部量子态和/或此类态的叠加组成的分子束来说明该方法。我们希望该方法将在随后的化学反应基本原理及其控制以及冷分子作为研究量子动力学某些最深刻问题的手段的探索中得到应用。

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