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Focusing Characteristics of Curvilinear Half-Open Fresnel Zone Plate Lenses: Plane Wave Illumination

机译:曲线半开式菲涅耳波带片透镜的聚焦特性:平面波照明

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A diffraction field-focusing equation based on a specific conical-segment linearization procedure is derived for the Fresnel zone plate (FZP) lens of arbitrary curved profile and is applied for contrasting plane, spherical, parabolic and conical zone plate lenses, convex-side illuminated by a paraxial plane wave front. Two sets of 100-GHz curvilinear and plane FZP lenses are studied numerically with regards to their dimensions, axial focusing intensity and footprint, and frequency bandwidth. For the first set, where the curvilinear and plane lenses share a common lens base aperture and have equal focal lengths, the following new finding has resulted: regardless of their different in shape profiles the FZP lenses have equal zone numbers and produce similar axial focusing. The second set also consists of plane, spherical, parabolic and conical lenses. They share a common apex, and have equal in diameter base apertures and focal lengths but different thicknesses. For such disposition and proportions, the FZP lenses possess different zone numbers and focusing parameters (gain, efficiency, footprint and bandwidth). The belief that the curvilinear FZP have superior (or inferior) electromagnetic characteristics, compared to those of the plane FZP lens with equal number of zones is not in general true. Their relative focusing qualities can vary significantly depending on the lens positioning and dimensions.
机译:针对任意弯曲轮廓的菲涅耳波带片(FZP)透镜,推导了基于特定圆锥段线性化程序的衍射场聚焦方程,并将其应用于对比平面,球面,抛物线和圆锥形波带片透镜,凸面照明通过近轴平面波前。对两组100 GHz曲线和平面FZP透镜进行了尺寸,轴向聚焦强度和覆盖范围以及频率带宽方面的数值研究。对于第一组,其中曲线透镜和平面透镜共享一个共同的透镜基本光圈并具有相等的焦距,得出了以下新发现:不管它们的形状轮廓如何不同,FZP透镜都具有相同的区域编号并产生相似的轴向聚焦。第二组还包括平面,球面,抛物线和圆锥透镜。它们具有共同的顶点,并且具有相同的直径基本孔径和焦距,但厚度不同。对于这种配置和比例,FZP镜头具有不同的区域编号和聚焦参数(增益,效率,覆盖区和带宽)。与具有相等区域数的平面FZP透镜相比,曲线FZP具有更好(或劣等)的电磁特性的说法通常是不正确的。它们的相对聚焦质量可能会根据镜头的位置和尺寸而有很大差异。

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