论文标题
机械泛音频率梳子
Mechanical overtone frequency combs
论文作者
论文摘要
机械频率梳子有望将光频率梳的应用和实用性带入机械域。到目前为止,他们的主要挑战是对驱动频率和功率的严格要求,这使操作变得复杂。我们展示了一种直接的机制,可以创建一个由单个本征频率的机械泛音(整数倍数)组成的频率梳子,该机制是通过单层整合具有与反向传播光学陷阱的悬浮介质膜的。周期性光场调节膜运动覆盖膜上的介电性力。这些泛音具有固定的频率和相位关系,并构成机械频率梳子。周期性光场还创建了无需额外功率或外部频率参考的Optothermal参数驱动器。这种效果的组合导致一个易于使用的机械频率梳状平台,不需要精确的对齐,不需要额外的反馈或控制电子设备,并且仅使用单个MW连续波激光束。这突出了泛音频率梳子是传感,计量和量子声学应用的直接未来。
Mechanical frequency combs are poised to bring the applications and utility of optical frequency combs into the mechanical domain. So far, their main challenge has been strict requirements on drive frequencies and power, which complicate operation. We demonstrate a straightforward mechanism to create a frequency comb consisting of mechanical overtones (integer multiples) of a single eigenfrequency, by monolithically integrating a suspended dielectric membrane with a counter-propagating optical trap. The periodic optical field modulates the dielectrophoretic force on the membrane at the overtones of a membrane's motion. These overtones share a fixed frequency and phase relation, and constitute a mechanical frequency comb. The periodic optical field also creates an optothermal parametric drive that requires no additional power or external frequency reference. This combination of effects results in an easy-to-use mechanical frequency comb platform that requires no precise alignment, no additional feedback or control electronics, and only uses a single, mW continuous wave laser beam. This highlights the overtone frequency comb as the straightforward future for applications in sensing, metrology and quantum acoustics.