论文标题

使用相位敏感性鉴定分子量子态

Identification of molecular quantum states using phase-sensitive forces

论文作者

Najafian, Kaveh, Meir, Ziv, Sinhal, Mudit, Willitsch, Stefan

论文摘要

现在,用于操纵量子系统的量子逻辑技术现在越来越多地应用于分子。先前对单个垂体物种的实验已使状态检测具有出色的保真度和高度精确的光谱测量值。但是,对于具有致密能水平结构的复杂分子而言,需要改进方法。在这里,我们证明了使用状态依赖性力的分子状态检测增强的量子方案。我们的方法基于干扰参考和信号力分别施加到单个原子和分子离子上,以提取其相对相。我们使用此阶段信息来识别嵌入在致密分子能级结构中的状态并监视状态到态的非弹性散射过程。当初始状态制备不完美时,此方法也可以用来在单个测量中排除大量状态,并且有关分子特性的信息不完整。虽然本实验的重点是n $ _2^+$,但该方法是一般的,预计对多原子系统特别有益。

Quantum-logic techniques used to manipulate quantum systems are now increasingly being applied to molecules. Previous experiments on single trapped diatomic species have enabled state detection with excellent fidelities and highly precise spectroscopic measurements. However, for complex molecules with a dense energy-level structure improved methods are necessary. Here, we demonstrate an enhanced quantum protocol for molecular state detection using state-dependent forces. Our approach is based on interfering a reference and a signal force applied to a single atomic and molecular ion, respectively, in order to extract their relative phase. We use this phase information to identify states embedded in a dense molecular energy-level structure and to monitor state-to-state inelastic scattering processes. This method can also be used to exclude a large number of states in a single measurement when the initial state preparation is imperfect and information on the molecular properties is incomplete. While the present experiments focus on N$_2^+$, the method is general and is expected to be of particular benefit for polyatomic systems.

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