Department of Applied Physics, California Institute of Technology, 1200 East California Boulevard, Pasadena, California 91125, USA.
Phys Rev Lett. 2010 Feb 26;104(8):083901. doi: 10.1103/PhysRevLett.104.083901. Epub 2010 Feb 22.
The phonon analog of an optical laser has long been a subject of interest. We demonstrate a compound microcavity system, coupled to a radio-frequency mechanical mode, that operates in close analogy to a two-level laser system. An inversion produces gain, causing phonon laser action above a pump power threshold of around 7 microW. The device features a continuously tunable gain spectrum to selectively amplify mechanical modes from radio frequency to microwave rates. Viewed as a Brillouin process, the system accesses a regime in which the phonon plays what has traditionally been the role of the Stokes wave. For this reason, it should also be possible to controllably switch between phonon and photon laser regimes. Cooling of the mechanical mode is also possible.
声子激光的光学类似物一直是人们感兴趣的课题。我们展示了一个与射频机械模式耦合的复合微腔系统,该系统的工作原理与二能级激光系统非常相似。反转产生增益,在约 7 微瓦的泵浦功率阈值以上导致声子激光作用。该器件具有连续可调的增益谱,可从射频到微波速率选择性地放大机械模式。从布里渊过程的角度来看,该系统可以进入一个声子扮演传统上斯托克斯波角色的区域。出于这个原因,也有可能在声子和光子激光区域之间进行可控切换。机械模式的冷却也是可能的。