Kaviani Hamidreza, Ghobadi Roohollah, Behera Bishnupada, Wu Marcelo, Hryciw Aaron, Vo Sonny, Fattal David, Barclay Paul
Opt Express. 2020 May 11;28(10):15482-15496. doi: 10.1364/OE.389170.
We present the design of an optomechanical device that allows sensitive transduction of the orbital angular momentum of light. An optically induced twist imparted on the device is detected using a photonic crystal cavity optomechanical system. This device allows the measurement of the orbital angular momentum of light when photons are absorbed by the mechanical element or the detection of the presence of photons when they are scattered into new orbital angular momentum states by a sub-wavelength grating patterned on the device. Such a system allows the detection of optical pulses with an l = 1 orbital angular momentum field that have an average photon number of 3.9 × 10 at a 5 MHz repetition rate, assuming that detector noise is not limiting measurement sensitivity. This scheme can be extended to higher order orbital angular momentum states.
我们展示了一种光机械装置的设计,该装置能够实现对光的轨道角动量的灵敏转换。利用光子晶体腔光机械系统来检测施加在该装置上的光学诱导扭转。当光子被机械元件吸收时,此装置可用于测量光的轨道角动量;或者当光子被装置上图案化的亚波长光栅散射到新的轨道角动量状态时,可用于检测光子的存在。假设探测器噪声不限制测量灵敏度,这样的系统能够以5兆赫兹的重复频率检测平均光子数为3.9×10的具有l = 1轨道角动量场的光脉冲。该方案可扩展到更高阶的轨道角动量状态。