New method for fabrication of backlighting fpd by binary optics 二元光學(xué)技術(shù)制作背光照明系統(tǒng)導(dǎo)光板
Jin guo - fan , yan ying - bai , wu ming - xian . binary optics m . beijing : national defense industry , 1998 . 55 - 64 金國(guó)藩,嚴(yán)瑛白,鄔敏賢二元光學(xué)m北京:國(guó)防工業(yè)出版社, 1998 55 - 64
Chapter two presents optical imaging characters of binary optical elements . in chapter three the principles of binary optic hyperspectral imaging technology are firstly introduced 第二章介紹了二元光學(xué)元件的成像特性,指出了二元光學(xué)元件的獨(dú)特的色散特性。
Then design and characteristic equations , incoherent point spread function psf and computer simulations of binary optic imaging spectrometer ' s imaging performance are provided 第三章詳細(xì)介紹了二元光學(xué)成像光譜技術(shù)的基本原理、特性方程、目標(biāo)重建算法和優(yōu)缺點(diǎn)。
In this paper , the development of micro - system is explained . the present research of binary optics and the main methods for shaping are described and some kinds of the methods of etching are compared 本文闡述了微系統(tǒng)的發(fā)展過程,敘述了二元光學(xué)的研究現(xiàn)狀和二元光學(xué)的成型過程,比較了幾種不同的刻蝕過程方法。
In chapter one of this dissertation the development history n characters and application of binary optics are reviewed . and the development , principles , classification and application of hyperspectral imaging technology are introduced 本文第一章概述了二元光學(xué)的發(fā)展概況,二元光學(xué)元件的特點(diǎn)和應(yīng)用,及成像光譜技術(shù)的基本原理、基本儀器類型。
In chapter six simple experimental prototype is designed and fabricated and experiments concerned are performed with it which demonstrate the basic theory and algorithms of binary optic hyperspectral imaging technology . finally , suggestions for future work are presented 第六章介紹了利用二元光學(xué)軸向色散的凝視光譜成像實(shí)驗(yàn)裝置的設(shè)計(jì),制備和試驗(yàn)情況,得到了較好的試驗(yàn)結(jié)果,驗(yàn)證了二元光學(xué)成像光譜技術(shù)的基本原理和算法。
The binary optic hyperspectral imaging technology is a spectro - tomographic technique which integrates over a narrowband of the image cube which is a new concept of imaging spectrometer . so the general research direction and the basic research scheme are determined 通過把光譜層析技術(shù)和窄帶濾波技術(shù)相結(jié)合,實(shí)現(xiàn)了一種新的成像光譜原理,即利用二元光學(xué)元件軸向色散的凝視成像光譜技術(shù),從而確定了論文的總體研究方向和基本方案。
Binary optic imaging spectrometer is a practical image spectrometer that can be built to operate at ultraviolet , visible or infrared wavelengths for applications in surveillance , remote sensing , medical imaging , law enforcement , environmental monitoring , and laser counter intelligence 利用二元光學(xué)透鏡軸向色散的凝視成像光譜儀在理論上是可行的,它可設(shè)計(jì)為工作在紫外、可見、和紅外波段用于空間監(jiān)視、遙感、醫(yī)學(xué)成像、環(huán)境監(jiān)測(cè)等方面。
The first section includes the theoretical and numerical analysis for diffractive optics elements and the second one gives the results of the fabrication experiments of diffractive optics elements . in the first section , we analyzed the antireflection of the diffraction optics elements . binary optics processing methods may be applied to a glass or silicon substrate to generate an array of small columns in order to enhance transmission 在理論分析的部分,本論文完成的主要工作是用耦合波理論分析了在玻璃或硅基底上制作具有亞波長(zhǎng)結(jié)構(gòu)的圓柱形網(wǎng)格陣列以實(shí)現(xiàn)對(duì)入射光的增透作用,為此而編寫的程序?qū)嶋H上也可以用來分析計(jì)算單位周期內(nèi)具有任意面形的網(wǎng)格光柵的電磁場(chǎng)衍射特性。