论文标题
旋转激发的超低分子的无损分散成像
Nondestructive dispersive imaging of rotationally excited ultracold molecules
论文作者
论文摘要
意识到分子在量子信息科学应用中的潜力的障碍是缺乏高保真,单分子成像技术。在这里,我们介绍并理论上分析了电子基态分子的分散成像的一般方案。我们的技术依赖于激发分子旋转状态的固有各向异性来产生光学双折射,这可以通过非谐振探针激光束的极化旋转来检测。使用\ narb和\ rbcs作为示例,我们构建了一种形式主义,用于选择要成像的分子状态以及与非谐波耦合有关的激发电子状态。我们的建议建立了实现大体分子气体度量级极化旋转的相关参数,从而实现了高保真的非损害成像。我们还概述了单独捕获分子的高保真成像的要求。
A barrier to realizing the potential of molecules for quantum information science applications is a lack of high-fidelity, single-molecule imaging techniques. Here, we present and theoretically analyze a general scheme for dispersive imaging of electronic ground-state molecules. Our technique relies on the intrinsic anisotropy of excited molecular rotational states to generate optical birefringence, which can be detected through polarization rotation of an off-resonant probe laser beam. Using \narb and \rbcs as examples, we construct a formalism for choosing the molecular state to be imaged and the excited electronic states involved in off-resonant coupling. Our proposal establishes the relevant parameters for achieving degree-level polarization rotations for bulk molecular gases, thus enabling high-fidelity nondestructive imaging. We additionally outline requirements for the high-fidelity imaging of individually trapped molecules.