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Effective Fresnel diffraction field extension of diffractive optical elements with plane wave incidence

机译:平面波入射率的衍射光学元件的有效菲涅耳衍射场延伸

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Diffractive optical elements (DOEs) are widely used to realize special diffraction fields today, but the size of the effective Fresnel diffraction field of the DOEs with plane wave incidence is limited by the wavelength of the incident beam, sampling interval of the DOE, and distance between the DOE and the output plane. In this paper, a method is proposed to extend the size of the effective Fresnel diffraction field with an introduced intermediate plane and two-step diffraction calculation. Zero padding is used on the DOE plane, the sampling interval on the intermediate plane is correspondingly decreased, and the size of the Fresnel diffraction field on the output plane is finally extended. The accompanying aliasing is eliminated by placing a low-pass filter on the intermediate plane. Both numerical simulations and experimental results show the validity of the proposed method to extend the size of the effective Fresnel diffraction field of the DOEs with plane wave incidence. (C) 2020 Optical Society of America
机译:衍射光学元件(确实)广泛用于实现当今特殊的衍射场,但是具有平面波入射的有效菲涅耳衍射场的尺寸受到入射光束的波长,DOE的采样间隔和距离的限制在DOE和输出平面之间。在本文中,提出了一种方法,以利用引入的中间平面和两步衍射计算延伸有效菲涅耳衍射场的尺寸。在DOE平面上使用零填充,中间平面上的采样间隔相应地降低,并且最终延伸了输出平面上的菲涅耳衍射场的尺寸。通过将低通滤波器放置在中间平面上来消除伴随的混叠。数值模拟和实验结果表明,延长了具有平面波入射的有效菲涅耳衍射场的尺寸的所提出的方法的有效性。 (c)2020美国光学学会

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    《Applied optics》 |2020年第11期|共5页
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