发明名称 Isotropic optical filter and method of manufacturing thereof
摘要 The present invention discloses an isotropic optical filter comprising high-index refraction material positioned between low-index-refraction matter. At least some of the high-index refraction material has a grated structure and lateral and vertical dimensions with respect to the low-index-refraction matter such that the high-index refraction material is operative to act as a leaky waveguide for light incident on the ZOF. The grated structure comprises at least two different grating patterns. Each of the at least two grating patterns constitutes a subpixel. A plurality of subpixels is operative to diffract incident light to at least two zero-order wavelength spectra respective of the at least two grating patterns such to exhibit an isotropic color effect with respect to the rotational orientation of the isotropic optical filter. The plurality of subpixels constitute an isotropic pixel.
申请公布号 US9213128(B2) 申请公布日期 2015.12.15
申请号 US201113285008 申请日期 2011.10.31
申请人 CSEM CENTRE SUISSE D'ELECTRONIQUE ET DE MICROTECHNIQUE SA - RECHERCHE ET DEVELOPPEMENT 发明人 Walter Harald;Stuck Alexander
分类号 G02B5/18;G02B27/44;B42D25/29;B42D25/328 主分类号 G02B5/18
代理机构 Young & Thompson 代理人 Young & Thompson
主权项 1. An isotropic optical filter comprising: high-index refraction material positioned between low-index-refraction matter, the isotropic filter defining a X-Y plane and a z-axis orthogonal to the x-y plane; wherein at least some of the high-index refraction material has a grated structure and lateral and vertical dimensions with respect to the low-index-refraction matter such that the high-index refraction material is operative to act as a zero-order diffractive filter for visible light incident on said isotropic optical filter; wherein the grated structure comprises at least two different grating patterns, said at least two different grating patterns differing from each other in that i) a planar grating orientation of a first of the two different grating patterns is different from a planar grating orientation of a second of the two different grating patterns, ii) a grating period of the first of the two different grating patterns is different from a grating period of the second of the two different grating patterns, or iii) a grating depth of the first of the two different grating patterns is different from a grating depth of the second of the two different grating patterns, wherein said at least two different grating patterns have grating periods smaller than 500 nm; wherein each of the at least two grating patterns defines a subpixel; and wherein a plurality of subpixels is operative to outcouple incident light to at least two zero-order wavelength spectra respective of the at least two grating patterns such to exhibit a characteristic color effect for each viewing angle, the viewing angle being defined as an angle relative to the Z-axis, the at least two grating patterns exhibiting a change of the characteristic color effect relative to a change of the viewing angle, the at least two grating patterns further exhibiting a substantial unchanged characteristic color effect for a fixed viewing angle and a rotation of the isotropic optical filter around any axis parallel to the Z-axis, said substantial unchanged characteristic color effect being defined as a weak color effect defined as hardly recognizable to the human eye.
地址 Neuchatel CH