论文标题
分子氧离子中振动泛音转变的精确量子逻辑光谱的前景
Prospect for precision quantum logic spectroscopy of vibrational overtone transitions in molecular oxygen ions
论文作者
论文摘要
精度光谱学一直是我们身体理解进步的推动力,仍然是研究新物理学的有前途的工具。分子提供过渡,允许在原子系统中无法进行测试。然而,由于缺乏用于状态制备和状态检测的骑自行车的转变,通常的分子精确光谱是具有挑战性的。对于分子离子,可以通过量子逻辑光谱法克服这种障碍,在这种量子逻辑光谱中,用于状态制备和检测的耗散是通过利用共同运动本质的共同特征的共同原子离子提供的。在这里,我们提出了一种用于分子氧离子的完整量子逻辑光谱方案,理论上研究了量子逻辑辅助状态检测和制备的可行性。此外,我们为振动泛音转变的直接单光子四极激发提供了耦合速率,该转变可以用作敏感的过渡,以测试质子与电子质量比的可能变化。
Precision spectroscopy has been the driving force for progress of our physical understanding and still is a promising tool for the investigation of new physics. Molecules offer transitions which allow tests that are not possible in atomic systems. However, usually precision spectroscopy of molecules is challenging due to the lack of cycling transitions for state preparation and state detection. For molecular ions, this obstacle can be overcome by quantum logic spectroscopy, where dissipation for state preparation and detection is provided by a co-trapped atomic ion exploiting the shared eigenstates of motion. Here, we propose a full quantum logic spectroscopy scheme for molecular oxygen ions and theoretically investigate the feasibility of quantum logic assisted state detection and preparation. Furthermore, we provide coupling rates for a direct single-photon quadrupole excitation of a vibrational overtone transition that can serve as a sensitive transition for tests of a possible variation of the proton-to-electron mass ratio.