The optimization of molecular structure is a very difficult global optimize problem. As there are many parameters to describe the molecular, it is hard to find the global optimal without an… (More)
We demonstrate the controllable optomechanical coupling by changing the position of fiber anchored on device, and the intracavity locking between the OMO and self-pulsation showing 1/6 sub-harmonics… (More)
For the sensitive high-resolution force- and field-sensing applications, the large-mass microelectromechanical system (MEMS) and optomechanical cavity have been proposed to realize the sub-aN/Hz1/2… (More)
Here we report a record solid-state optomechanical oscillator for acceleration detection down to the thermodynamical limit, at 730 ng/Hz<sup>1/2</sup> resolution and 193 ng/Hz sensitivity, through… (More)
We demonstrate a chip-scale optomechanical cavity operating around 77.7-kHz which exhibits 44+ GHz/nm optomechanical coupling. The 58-kHz force-induced RF dynamic range and 100+ order… (More)