首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Design of diffractive optical elements for beam shaping of micro-pixellated LED light to a tightly focused spot
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Design of diffractive optical elements for beam shaping of micro-pixellated LED light to a tightly focused spot

机译:用于将微像素化LED光光束整形为紧密聚焦的衍射光学元件的设计

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摘要

Tightly focused spots with small central lobes, high central intensity and low sidelobe intensity are desirable for many light-emitting diode based micro-projection system applications. Diffractive optical elements ( DOEs) offer a potentially low cost and flexible choice for realizing this task. We have approached the design of suitable elements using two methods: various step size simulated quenching ( VSSQ) and multiresolution various step size simulated quenching followed by direct binary search ( M-VSSQ-DBS). M-VSSQ-DBS greatly increases the central intensity of the spots, and only slightly influences the sidelobe intensity, most often favourably reducing it. When the central lobe size is 0.8 times that of the geometrical-optics limit, the peak intensity can be as high as 97.73% that of the geometrical spot, and the relative maximum sidelobe intensity is 51.14% of the peak intensity. The designs are tolerant to variations in the actual width of the light source and to lateral misalignment. We verify the designed DOE using rigorous diffraction theory, i.e. the finite-difference time-domain method. The results obtained by scalar and rigorous diffraction theory are in excellent agreement with each other.
机译:对于许多基于发光二极管的微投影系统应用而言,具有小中心瓣,高中心强度和低旁瓣强度的紧密聚焦点是理想的。衍射光学元件(DOE)为实现该任务提供了潜在的低成本和灵活选择。我们已经使用两种方法来设计合适的元件:各种步长的模拟淬灭(VSSQ)和多分辨率各种步长的模拟淬灭,然后进行直接二进制搜索(M-VSSQ-DBS)。 M-VSSQ-DBS极大地增加了斑点的中心强度,并且仅轻微影响旁瓣强度,最常见的是降低旁瓣强度。当中心波瓣大小是几何光学极限的0.8倍时,峰值强度可能高达几何斑点的峰值强度的97.73%,相对最大旁瓣强度是峰值强度的51.14%。该设计容许光源的实际宽度的变化和横向未对准。我们使用严格的衍射理论(即时域有限差分法)验证了设计的DOE。通过标量和严格的衍射理论获得的结果彼此非常吻合。

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