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Generation of optical vortex array by using a diffraction grating

机译:利用衍射光栅产生光学涡旋阵列

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The generation of an optical vortex array (OVA) by using diffraction grating is presented. At first a diffraction grating is produced with a computer and displayed on a spatial light modulator (SLM) which is controlled by the computer. Then let a plane light irradiate the SLM with the diffraction grating vertically. The transmitted lights after the SLM can produce a regular optical vortex array which can be observed by adjusting the diffraction distance of the grating. The principle of the generation is discussed and the distribution of the intensity of the optical vortex array is presented. The properties of the produced optical vortex array at different diffraction distance are also discussed. The simulations are completed and the results show that the optical vortex array can be generated well by using the diffraction grating, which is simple and easy to implement. And we measure the deformation phase by using the zero-contour of the real parts of the OVA, which provides a new method for deformation phase measurement.
机译:提出了利用衍射光栅产生光学涡旋阵列(OVA)的方法。首先,用计算机产生衍射光栅,并将其显示在由计算机控制的空间光调制器(SLM)上。然后,让平面光垂直地用衍射光栅照射SLM。 SLM之后的透射光可以产生规则的光学涡旋阵列,可以通过调整光栅的衍射距离来观察。讨论了产生的原理,并给出了光学涡旋阵列强度的分布。还讨论了在不同衍射距离下产生的光学涡旋阵列的特性。通过仿真实验,结果表明,采用衍射光栅可以很好地产生光学涡旋阵列,且结构简单,易于实现。并且我们通过使用OVA实部的零轮廓来测量变形相位,这为变形相位测量提供了一种新方法。

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