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Superpixel-based spatial amplitude and phase modulation using a digital micromirror device

机译:使用数字微镜器件的基于超像素的空间幅度和相位调制

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摘要

We present a superpixel method for full spatial phase and amplitude control of a light beam using a digital micromirror device (DMD) combined with a spatial filter. We combine square regions of nearby micromirrors into superpixels by low pass filtering in a Fourier plane of the DMD. At each superpixel we are able to independently modulate the phase and the amplitude of light, while retaining a high resolution and the very high speed of a DMD. The method achieves a measured fidelity F = 0.98 for a target field with fully independent phase and amplitude at a resolution of 8 × 8 pixels per diffraction limited spot. For the LG10 orbital angular momentum mode the calculated fidelity is F = 0.99993, using 768 × 768 DMD pixels. The superpixel method reduces the errors when compared to the state of the art Lee holography method for these test fields by 50% and 18%, with a comparable light efficiency of around 5%. Our control software is publicly available. © 2014 Optical Society of America
机译:我们提出了一种使用数字微镜器件(DMD)与空间滤波器相结合的光束的完整空间相位和振幅控制的超像素方法。我们通过在DMD的傅立叶平面中进行低通滤波将附近微镜的正方形区域组合为超像素。在每个超像素处,我们都能够独立调制光的相位和幅度,同时保持DMD的高分辨率和极高的速度。该方法对于具有完全独立的相位和幅度的目标场,在每个衍射极限点的分辨率为8×8像素的情况下,实现了保真度F = 0.98。对于LG10轨道角动量模式,使用768×768 DMD像素,计算出的保真度为F = 0.99993。与这些测试场的先进Lee全息方法相比,超像素方法将误差降低了50%和18%,可比的光效率约为5%。我们的控制软件是公开可用的。 ©2014美国眼镜学会

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