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Synthetic amplitude for improved reconstruction of noniterative phase holograms

机译:改善非特性全息图改进重建的合成振幅

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摘要

In this paper, we show how a specially designed synthetic amplitude can be used to obtain greatly improved reconstruction of objects only using the phase data of their Fourier or Fresnel transforms. The reconstruction of objects from phase-only information is of interest because phase modulation has much higher efficiency than amplitude modulation and can be achieved with a high degree of precision with current liquid-crystal-on-silicon spatial light modulators. However, direct reconstruction of an object from its phase information usually results in severely degraded outputs. Due to this issue, to achieve optimal reconstruction, the object information must be codified in a phase hologram by means of time-consuming algorithms. To avoid these kinds of algorithms, we propose using a synthetic amplitude, designed in such a way that, when multiplied with the phase information of the object, leads to high-quality reconstruction. This synthetic amplitude contains no information about the object and can be used to reconstruct a number of different inputs without further processing. We present experiments carried out in virtual and actual optical systems verifying the validity of our proposal for 2D, 3D, and dynamic scenes. (C) 2019 Optical Society of America.
机译:在本文中,我们展示了如何使用特殊设计的合成幅度来使用傅立叶或菲涅耳变换的相位数据来获得对物体的大大改进的重建。从相位信息中重建对象的重建是感兴趣的,因为相位调制具有比幅度调制更高的效率,并且可以通过具有电流液晶的硅空间光调制器的高精度来实现。然而,从其相位信息的直接重建对象通常会导致严重降级的输出。由于此问题,为了实现最佳的重建,必须通过耗时的算法在相位全息图中编写对象信息。为了避免这些种类的算法,我们建议使用合成幅度,以这种方式设计,当乘以物体的相位信息时,导致高质量的重建。该合成幅度不包含关于对象的信息,并且可以用于重建许多不同的输入而无需进一步处理。我们在虚拟和实际光学系统中进行实验,验证我们对2D,3D和动态场景的提案的有效性。 (c)2019年光学学会。

著录项

  • 来源
    《Applied optics》 |2019年第22期|共8页
  • 作者单位

    UNLP CIC CONICET La Plata Ctr Invest Opt POB 3 RA-1897 La Plata Buenos Aires Argentina;

    Univ Nacl La Plata UIDET OPTIMO Dept Ciencias Basicas Fac Ingn La Plata Buenos Aires Argentina;

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  • 正文语种 eng
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