Kippenberg T J, Vahala K J
Max Planck Institute für Quantenoptik, 85748 Garching, Germany.
Science. 2008 Aug 29;321(5893):1172-6. doi: 10.1126/science.1156032.
The coupling of optical and mechanical degrees of freedom is the underlying principle of many techniques to measure mechanical displacement, from macroscale gravitational wave detectors to microscale cantilevers used in scanning probe microscopy. Recent experiments have reached a regime where the back-action of photons caused by radiation pressure can influence the optomechanical dynamics, giving rise to a host of long-anticipated phenomena. Here we review these developments and discuss the opportunities for innovative technology as well as for fundamental science.
光学自由度与机械自由度的耦合是许多测量机械位移技术的基本原理,从宏观尺度的引力波探测器到扫描探针显微镜中使用的微观尺度悬臂梁皆是如此。最近的实验已达到一种状态,即由辐射压力引起的光子反作用能够影响光机械动力学,从而引发了许多长期以来备受期待的现象。在此,我们回顾这些进展,并讨论创新技术以及基础科学方面的机遇。