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1.
Manufacture of 1520nm~1580nm Infrared Antireflection Coating;
1520nm~1580nm红外减反射膜的制备
2.
Comparing Research on TiO_2 Anti-reflection Coating (ARC) and SiN ARC of Crystalline Si Solar Sells;
晶体硅太阳电池TiO_2与SiN减反射膜对比研究
3.
Development of Antireflection Thin Films Based on Glan-Taylor Prism in Visible Spectrum and 1064 nm
可见光波段及1064nm波长处用于Glan-Taylor棱镜减反射膜
4.
Development of 400-1100 nm Antireflection Film Based on Glan-Taylor Prism
400-1100nm波段用于格兰泰勒棱镜减反射膜的研制
5.
IR Antireflection Coatings on Ge Deposited by APS IAD
应用等离子体离子辅助技术沉积的锗基底红外减反射膜
6.
Fabrication of Subwavelength Structured Antireflection Coating Based on Ultraviolet Nanoimprint and Anodic Aluminum Oxide;
基于多孔阳极氧化铝模板和紫外纳米压印的减反射膜制备技术
7.
Study on the process and properties of nano-porous SiO_2 anti-reflection film applied in the solar module
太阳电池组件上纳米多孔SiO_2减反射膜的制备和增透性能研究
8.
Design of new nano anti-reflection coating for space silicon solar cells
新型空间硅太阳电池纳米减反射膜系的优化设计
9.
Eu~(3+)-Doped SiO_2 anti-reflection film by Sol-gel method for Si solar cells
稀土铕掺入多孔二氧化硅减反射膜对太阳能电池效率的影响(英文)
10.
Cadmium mercury thiocyanate and Zinc cadmium thiocyanate(abbreviated as CMTC and ZCTC,respectively)are two of the most important nonlinear optical crystals.
简要报道了在硫氰酸镉汞晶体和硫氰酸锌镉晶体表面镀减反射膜的研究。
11.
Study on Organic/Inorganic Hybrid Organosilicon Antireflective Coatings by Sol-gel Technology;
溶胶—凝胶法制备有机硅掺杂的有机/无机复合疏水性减反射膜的研究
12.
Optimization Design & Technical Study on Antireflection Coating System;
减反射薄膜膜系优化设计及工艺研究
13.
Study on Double Layer Anti-Reflection Coating of TiO_2/TiO_2
单质TiO_2双层减反射薄膜的实验研究
14.
Study on Double Layers Anti-Reflection Coating of SiO_2/TiO_2 by Magnetron Sputtering
磁控溅射制备SiO_2/TiO_2双层减反射薄膜的研究
15.
Preparation of Antireflective Films on Borosilicate Glass by Sol-gel Method
溶胶-凝胶法制备硼硅酸盐玻璃上减反射薄膜
16.
Preparation and Characterization of MgF_2/ZnS Double-layer Antireflection Films Applied in Silicon Solar Cells
硅太阳电池用MgF_2/ZnS双层减反射薄膜的制备及表征
17.
auto adapted subtraction of multiples
多次反射的自适应消减
18.
Results indicate that the optical band gap of the CN x films is decreased with the increasing nitrogen concentration, accompanied with the reflectance increase of the films.
结果表明:随着薄膜中氮含量的增加,碳氮薄膜的光学禁带宽度减小,红外反射率增加。