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Localization in quantum systems with broken parities

机译:Quantum系统中的定位具有破损的疗程

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摘要

For quantum systems with broken parities, a transition can appear for any two different states, and cyclic transition structures can be generated for the lowest three levels. Based on these loop transitions, we discuss how to achieve high-precision localization effects for physical objects with broken parities, i.e. chiral molecules and asymmetric quantum wells. In a Delta-type three-level system interacting simultaneously with three external fields, one of which is a standing-wave field, the absorption spectrum carries information about the position of the objects. Moreover, we can achieve 100% probability of finding the objects at certain positions by choosing appropriate parameters. In addition, we present two possible implementations of the suggested scheme in a system comprising a mixture of left- and right-handed chiral molecules and asymmetric quantum wells and show how the phase-sensitive localization effect can be used to discriminate between enantiomeric molecules.
机译:对于具有衰退的Quantum系统,可以出现任何两个不同状态的过渡,并且可以为最低三个级别产生循环过渡结构。 基于这些循环转变,我们讨论如何为具有破裂的次数,即手性分子和不对称量子孔来实现高精度定位效果。 在与三个外部场同时交互的三级三级系统中,其中一个是驻波场,吸收光谱带有关于物体位置的信息。 此外,我们可以通过选择适当的参数来实现100%在某些位置找到物体的概率。 此外,我们在包含左右手性分子和不对称量子孔的混合物中提出了两种建议方案的可能实施例,并且表明如何使用相敏局部化效果如何区分对映体分子。

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