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首页> 外文期刊>Journal of optics >Radial beam by amplitude modulation and phase-shifting per quadrant in a double-aperture common-path interferometer
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Radial beam by amplitude modulation and phase-shifting per quadrant in a double-aperture common-path interferometer

机译:双孔径共轨干涉仪中每象限幅度调制和相移径向梁

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摘要

In this work, we propose a very simple, and efficient interferometric setup for transforming a homogeneous linearly polarized beam into a radially polarized beam. The proposal is based in a double-aperture common-path interferometer adapted for phase-shifting of pi radians per quadrant. It is carried out by placing two composed grating in each aperture, which are built by joining two gratings displaced by a half-period, on horizontal and vertical direction, respectively. The input optical beams are orthogonal and linearly polarized, and their amplitudes are modulated in quadrature. We show that the combination of amplitude-only filters and the pi phase-shifting per quadrant can achieve the implementation of complex filters such as the sinusoidal ones. The combination of the spatial modulation of both amplitude and phase generates an optical field with radial polarization. Specialized optical elements of high cost and SLM devices are avoided. We show the theoretical model and experimental results.
机译:在这项工作中,我们提出了一种非常简单,有效的干涉式设置,用于将均匀的线性偏振光束转换为径向偏振光束。该提案基于双孔径公共路径干涉仪,适用于每个象限的PI弧度的移相。通过将两个组成的光栅放置在每个孔中来进行,这通过分别通过半周期的两个光栅分别在水平和垂直方向上进行。输入光束正交和线性极化,并且它们的幅度在正交中调制。我们表明,仅幅度滤波器和PI相移每象限的组合可以实现诸如正弦滤网之类的复杂过滤器的实现。两个幅度和相位的空间调制的组合产生具有径向偏振的光学场。避免了高成本和SLM器件的专用光学元件。我们展示了理论模型和实验结果。

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