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Feedback correction of angular error in grating READOUT

机译:光栅读数中角度误差的反馈校正

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摘要

Angular and wavelength READ beam errors in holographic interconnection systems are often a recurrent problem. Several strategies have been proposed to minimize or eliminate such READOUT misalignments. Some years ago, Chatterjee and co-workers proposed a method involving READ beam wavelength tuning to correct output angular errors. In this paper, we investigate the possibility of using an acousto-optic (A-O) Bragg cell with optoelectronic feedback to dynamically correct the scattered beam for deviations in the incidence direction of the READ beam of a hologram. The concept here is based on an acoustic frequency feedback strategy used recently by Balakshy and Kazaryan for laser beam directional stabilization. In the dynamic and adaptive method being proposed here, an acousto-optic Bragg cell is placed between the READ beam and the hologram. A photo-detector placed after the Bragg cell enables the estimation of scattered efficiency and hence (from the READ dephasing-based diffraction efficiency), the amount of the angular deviation. An algorithm for implementing the above scheme, to be used in a practical setup, is proposed and the results of numerical simulations are presented along with possible extensions to wavelength error correction and other applications.
机译:全息互连系统中的角度和波长读取光束误差通常是一个经常出现的问题。已经提出了几种策略来最小化或消除这种读出失准。几年前,Chatterjee及其同事提出了一种涉及READ光束波长调谐以校正输出角度误差的方法。在本文中,我们研究了使用带光电反馈的声光(A-O)布拉格单元动态校正散射光束的全息图READ光束的入射方向偏差的可能性。这里的概念基于Balakshy和Kazaryan最近使用的声频反馈策略,用于激光束定向稳定。在这里提出的动态和自适应方法中,在READ光束和全息图之间放置了一个声光布拉格单元。放置在布拉格单元之后的光电检测器能够估算散射效率,从而(根据基于READ移相的衍射效率)估算出角度偏差量。提出了一种用于上述方案的算法,将在实际设置中使用该算法,并给出了数值模拟的结果以及可能对波长误差校正和其他应用的扩展。

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