论文标题

光学悬浮镜的横向运动的光学捕获

Optical trapping of the transversal motion for an optically levitated mirror

论文作者

Kawasaki, Takuya, Kita, Naoki, Nagano, Koji, Wada, Shotaro, Kuwahara, Yuya, Ando, Masaki, Michimura, Yuta

论文摘要

光力学系统适用于以质量量表的意义在宏观尺度上阐明量子现象。该系统应从环境中得到充分隔离,以避免掩盖量子信号的古典噪音。光学悬浮是将光力系统与环境分离的有前途的方法。要实现光学悬浮,所有自由度都需要被困。到目前为止,已经详细研究了带有光辐射压力的镜子的纵向陷阱和旋转诱捕,并通过各种实验进行了验证。但是,对镜子的横向捕获的关注较少。本文中,我们报告了一个开创性的结果,我们通过实验确认使用扭转钟摆对Fabry-Pérot腔的镜子进行了横向捕获。通过这次演示,我们在实验上证明了光悬浮是可以实现的,只有两个垂直对齐的Fabry-Pérot腔。这项工作为光悬浮并实现宏观量子系统铺平了道路。

Optomechanical systems are suitable for elucidating quantum phenomena at the macroscopic scale in the sense of the mass scale. The systems should be well-isolated from the environment to avoid classical noises, which conceal quantum signals. Optical levitation is a promising way to isolate optomechanical systems from the environment. To realize optical levitation, all degrees of freedom need to be trapped. Until now, longitudinal trapping and rotational trapping of a mirror with optical radiation pressure have been studied in detail and validated with various experiments. However, less attention has been paid to the transversal trapping of a mirror. Herein, we report a pioneering result where we experimentally confirmed transversal trapping of a mirror of a Fabry-Pérot cavity using a torsional pendulum. Through this demonstration, we experimentally proved that optical levitation is realizable with only two Fabry-Pérot cavities that are aligned vertically. This work paves the way toward optical levitation and realizing a macroscopic quantum system.

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