论文标题
光学悬浮的纳米铃的5D冷却和非线性动力学
5D cooling and nonlinear dynamics of an optically levitated nanodumbbell
论文作者
论文摘要
真空中的光学上悬浮的非球形颗粒是扭矩传感,旋转量子力学,高频重力波检测和其他多个其他应用的出色候选物。许多潜在的应用,例如检测双重表面附近的Casimir扭矩,都需要同时冷却质量运动中心运动和非球形纳米颗粒的扭转振动(或旋转)。在这里,我们报告了悬浮的纳米颗粒的第一个5D冷却。我们同时在线性偏振激光器中同时冷却3个质量运动模式和2个旋转纳米贝尔的扭转振动模式。唯一的未冷却的刚体自由度是纳米贝尔在其长轴上的旋转。这种自由旋转模式不会直接与光学镊子搭配。令人惊讶的是,我们观察到它强烈影响纳米贝尔的扭转振动。这项工作加深了我们对悬浮纳米颗粒的非线性动力学和旋转耦合的理解,并为完全量子控制其运动铺平了道路。
Optically levitated nonspherical particles in vacuum are excellent candidates for torque sensing, rotational quantum mechanics, high-frequency gravitational wave detection, and multiple other applications. Many potential applications, such as detecting the Casimir torque near a birefringent surface, require simultaneous cooling of both the center-of-mass motion and the torsional vibration (or rotation) of a nonspherical nanoparticle. Here we report the first 5D cooling of a levitated nanoparticle. We cool the 3 center-of-mass motion modes and 2 torsional vibration modes of a levitated nanodumbbell in a linearly-polarized laser simultaneously. The only uncooled rigid-body degree of freedom is the rotation of the nanodumbbell around its long axis. This free rotation mode does not couple to the optical tweezers directly. Surprisingly, we observe that it strongly affects the torsional vibrations of the nanodumbbell. This work deepens our understanding of the nonlinear dynamics and rotation coupling of a levitated nanoparticle and paves the way towards full quantum control of its motion.