首页> 外文会议>Optical Trapping and Optical Micromanipulation IV; Proceedings of SPIE-The International Society for Optical Engineering; vol.6644 >Optical coherence measurements of vortex light fields using optically manipulated micro-apertures
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Optical coherence measurements of vortex light fields using optically manipulated micro-apertures

机译:使用光学操纵的微孔对涡旋光场进行光学相干测量

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In this paper, we make use of optically controlled phase sampling methods with the use of a dual beam optical trapping system. The dual beam trap enables us to remotely position a single birefringent particle and a second silica microsphere to form a Young's slits type experiments within a probe laser field. The controlled rotation of the birefringent particle means that it acts as both a micro-diffuser and diffracting aperture at the same time. By observing the visibility of the far-field interference fringes, we measure the relative mutual coherence of the optical field between any two selected point sources. This technique provides us with a unique localized sampling method.
机译:在本文中,我们将光控相位采样方法与双光束光阱系统结合使用。双光束阱使我们能够远程定位单个双折射粒子和第二个二氧化硅微球,从而在探针激光场内形成杨氏狭缝型实验。双折射粒子的受控旋转意味着它同时充当微扩散器和衍射孔。通过观察远场干涉条纹的可见性,我们可以测量任意两个选定点源之间光场的相对相互相干性。这种技术为我们提供了一种独特的局部采样方法。

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