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控制光线角度的光学膜表面微结构设计 被引量:2
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作者 李忠良 张启 +3 位作者 高慧芳 吴金华 洪乙又 王绪丰 《光电子技术》 CAS 2017年第1期35-39,47,共6页
设计了一种能够偏转光线角度的光学膜,使显示模块中心的亮度光线以特定角度出射。运用Lighttools软件进行了角度亮度仿真,分析了大视角光线的光路,并对转向膜微结构进行优化以消除大视角光线。制作了包含转向膜的显示模块样品并进行试... 设计了一种能够偏转光线角度的光学膜,使显示模块中心的亮度光线以特定角度出射。运用Lighttools软件进行了角度亮度仿真,分析了大视角光线的光路,并对转向膜微结构进行优化以消除大视角光线。制作了包含转向膜的显示模块样品并进行试验。结果表明,该转向膜具有控制光线角度的功能,能够有效消除光污染。 展开更多
关键词 液晶显示 转向膜 光污染 控制光线角度
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Laser-induced forward transferred silver nanomembrane with controllable light absorption
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作者 LI Ruo-zhou GUO Lyu-jiu +2 位作者 YANG Ming-qing QU Ke YAN Jing 《Journal of Central South University》 SCIE EI CAS CSCD 2022年第10期3399-3409,共11页
Laser processing provides highly-controlled modification and on-demand fabrication of plasmon metal nanostructures for light absorption and photothermal convention.We present the laser-induced forward tansfer(LIFT)fab... Laser processing provides highly-controlled modification and on-demand fabrication of plasmon metal nanostructures for light absorption and photothermal convention.We present the laser-induced forward tansfer(LIFT)fabrication of silver nanomembranes in control of light absorption.By varying the hatch distance,different morphologies of randomly distributed plasmon silver nanostructures were produced,leading to well-controlled light absorption levels from 11%to 81%over broadband.The anti-reflection features were maintained below 17%.Equilibrated and plain absorptions were obtained throughout all absorption levels with a maximum intensity fluctuation of±8.5%for the 225μJ cases.The 45μJ pulse energy can offer a highly equilibrated absorption at a 60%absorption level with an intensity fluctuation of±1%.Pattern transfer was also achieved on a thin tape surface.The laser-transferred characters and patterns demonstrate a localized temperature rise.A rapid temperature rising of roughly 15℃can be achieved within 1 s.The LIFT process is highly efficiently fabricated with a typical speed value of 10^(3)to 10^(5)cm^(2)/h.The results indicated that LIFT is a well-controlled and efficient method for the production of optical films with specific absorption levels. 展开更多
关键词 laser-induced forward transfer silver nanomembrane controllable light absorption laser printing
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