Sharma Varun, Aadhi A, Samanta G K
Opt Express. 2019 Jun 24;27(13):18123-18130. doi: 10.1364/OE.27.018123.
We report on direct generation of optical vortices from a continuous-wave (cw), Gaussian beam pumped doubly resonating optical parametric oscillator (DRO). Using a 30-mm long MgO doped periodically poled lithium tantalate (MgO:sPPLT) crystal based DRO, pumped in the green by a frequency-doubled Yb-fiber laser in Gaussian spatial profile we have generated signal and idler beams in vortex mode of order, l = 1, tunable across 970-1178 nm. Controlling the overlap between the Gaussian pump beam with the fundamental cavity mode of the resonant signal and idler beams of the DRO through the tilt of the pump beam and/or the cavity mirror in transverse plane, we have generated both signal and idler beams in vortex and vortex dipole spatial profiles. Using the theoretical formalism for the vortex beam generation through the superposition of two Gaussian beams we have numerically calculated the spatial profile of the generated beam in close agreement with our experiment results. The generic experimental scheme can be used to generate optical vortex across the electromagnetic spectrum and in all time scales (cw to ultrafast) using suitable OPO.
我们报道了从连续波(cw)高斯光束泵浦的双共振光学参量振荡器(DRO)直接产生光学涡旋的情况。使用基于30毫米长的氧化镁掺杂的周期性极化钽酸锂(MgO:sPPLT)晶体的DRO,由高斯空间分布的倍频镱光纤激光器在绿光波段泵浦,我们产生了阶数为l = 1的涡旋模式的信号光和闲频光,波长可在970 - 1178纳米范围内调谐。通过在横向平面上倾斜泵浦光束和/或腔镜来控制高斯泵浦光束与DRO的共振信号光和闲频光的基模腔模之间的重叠,我们产生了涡旋和涡旋偶极空间分布的信号光和闲频光。利用通过两个高斯光束叠加产生涡旋光束的理论形式,我们对产生的光束的空间分布进行了数值计算,结果与实验结果非常吻合。该通用实验方案可用于使用合适的光学参量振荡器在整个电磁频谱以及所有时间尺度(从连续波到超快)上产生光学涡旋。