发明名称 Diffractive optical element, design method thereof and application thereof to solar cell
摘要 Disclosed are a diffractive optical element, a design method thereof and the application thereof in a solar cell. The design method for a design modulation thickness of a sampling point of the diffractive optical element comprises: calculating the modulation thickness of the current sampling point for each wavelength component; obtaining a series of alternative modulation thicknesses which are mutually equivalent for each modulation thickness, wherein a difference between the corresponding modulation phases is an integral multiple of 2π; and selecting one modulation thickness from the alternative modulation thicknesses of each wavelength to determine the design modulation thickness of the current sampling point. In an embodiment, the design method introduces a thickness optimization algorithm into a Yang-Gu algorithm. The design method breaks through limitations to the modulation thicknesses/modulation phases in the prior art and increases the diffraction efficiency, and the obtained diffractive optical element facilitates mass production by a modern photolithographic technique, which greatly reduces the cost. The diffractive optical element may also be applied to the solar cell, which provides an efficient and low-cost way for solar energy utilization.
申请公布号 US9547181(B2) 申请公布日期 2017.01.17
申请号 US201214355939 申请日期 2012.11.08
申请人 INSTITUTE OF PHYSICS, CHINESE ACADEMY OF SCIENCES 发明人 Yang Guozhen;Dong Bizhen;Zhang Yan;Ye Jiasheng;Meng Qingbo;Huang Qingli;Wang Jinze
分类号 G02B5/18;G02B27/42;G06F17/50;H01L31/054;G02B19/00;G02B27/10;G02B27/00 主分类号 G02B5/18
代理机构 Andrews Kurth Kenyon LLP 代理人 Andrews Kurth Kenyon LLP
主权项 1. A method of making a diffractive optical element by a photolithography process, wherein said diffractive optical element is configured to color-separate and focus a plurality of selected wavelength components of an incident sunlight beam on an output plane and wherein said diffractive optical element is designed by a method comprising: obtaining design modulation thicknesses at a plurality of sampling points of the diffractive optical element, the diffractive optical element being disposed at an input plane of an optical system and configured to modulate phase of an incident light beam having a plurality of wavelength components so as to obtain a desired optical distribution on an output plane; and, for each sampling point of the diffractive optical element: Step 1: calculating a modulation thickness for each wavelength component at a current sampling point of the diffractive optical element, and accordingly obtaining a respective plurality of modulation thicknesses corresponding to the plurality of wavelength components; Step 2: obtaining a series of mutually-equivalent alternative modulation thicknesses for each modulation thickness, the series of mutually-equivalent alternative modulation thicknesses being corresponding to a respective series of modulation phases mutually different by an integer multiple of 2π; Step 3: selecting a modulation thickness from the alternative modulation thicknesses of each wavelength component, and determining a design modulation thickness of the current sampling point based on a respective plurality of selected modulation thicknesses corresponding to the plurality of wavelength components; and designing the diffractive optical element by the design modulation thickness representing the thickness of the diffractive optical element at the current sampling point.
地址 Beijing CN