Huang Chenxi, Huang Hongxin, Toyoda Haruyoshi, Inoue Takashi, Liu Huafeng
State Key Laboratory of Modern Optical Instrumentation, Zhejiang University, Hangzhou, Zhejiang, China.
Opt Express. 2012 Nov 19;20(24):26099-109. doi: 10.1364/OE.20.026099.
We propose a new method for realizing high-spatial-resolution detection of singularity points in optical vortex beams. The method uses a Shack-Hartmann wavefront sensor (SHWS) to record a Hartmanngram. A map of evaluation values related to phase slope is then calculated from the Hartmanngram. The position of an optical vortex is determined by comparing the map with reference maps that are calculated from numerically created spiral phases having various positions. Optical experiments were carried out to verify the method. We displayed various spiral phase distribution patterns on a phase-only spatial light modulator and measured the resulting singularity point using the proposed method. The results showed good linearity in detecting the position of singularity points. The RMS error of the measured position of the singularity point was approximately 0.056, in units normalized to the lens size of the lenslet array used in the SHWS.
我们提出了一种用于实现光学涡旋光束中奇点高空间分辨率检测的新方法。该方法使用夏克 - 哈特曼波前传感器(SHWS)来记录哈特曼图。然后从哈特曼图计算出与相位斜率相关的评估值图。通过将该图与从具有不同位置的数值创建的螺旋相位计算出的参考图进行比较,来确定光学涡旋的位置。进行了光学实验以验证该方法。我们在纯相位空间光调制器上显示了各种螺旋相位分布图案,并使用所提出的方法测量了由此产生的奇点。结果表明在检测奇点位置方面具有良好的线性度。以SHWS中使用的微透镜阵列的透镜尺寸归一化后的单位计算,奇点测量位置的均方根误差约为0.056。