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一种快速高效渲染水下刻蚀和光束的方法 被引量:1
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作者 曹红飞 吴世通 李云飞 《系统仿真学报》 CAS CSCD 北大核心 2013年第7期1574-1579,共6页
为了快速渲染大面积水域的水下刻蚀及光束,将刻蚀图技术引入水下光照的渲染,结合FFT水面的周期性对刻蚀图进行改进。采用物理光学方程估算光子到达水下某深度时的强度,从光源视角以点图元渲染光子构造刻蚀图,然后通过投影纹理技术渲染... 为了快速渲染大面积水域的水下刻蚀及光束,将刻蚀图技术引入水下光照的渲染,结合FFT水面的周期性对刻蚀图进行改进。采用物理光学方程估算光子到达水下某深度时的强度,从光源视角以点图元渲染光子构造刻蚀图,然后通过投影纹理技术渲染水下地形的刻蚀,利用光线行进技术渲染水下光束,光束和刻蚀的渲染都是基于对刻蚀图的采样,且全部在GPU中执行。该方法易于实现,效率高,适合交互式应用。 展开更多
关键词 刻蚀图 FFT 周期性 投影纹理 光线行进
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新型光致微图蚀刻用抗蚀剂材料——化学放大系光刻胶
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《高分子材料》 1996年第3期50-52,59,共4页
关键词 刻蚀 光刻胶 光致微刻蚀 抗蚀剂
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Bilayer self-assembly on a hydrophilic, deterministically nanopatterned surface
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作者 Gregory S. Smith Seung-Yong Jung +4 位作者 James F. Browning Jong K. Keum Nickolay V. Lavrik Mussie G. Alemseghed C. Patrick Collier 《Nano Research》 SCIE EI CAS CSCD 2013年第11期784-794,共11页
We present measurements of the in situ, microscopic architecture of a self- assembled bilayer at the interface between a regularly nanopatterned surface and an aqueous sub-phase using neutron reflectometry. The substr... We present measurements of the in situ, microscopic architecture of a self- assembled bilayer at the interface between a regularly nanopatterned surface and an aqueous sub-phase using neutron reflectometry. The substrate is patterned with a rectangular array of nanoscale holes. Because of the high quality of the pattern, using neutron reflectometry, we are able to map the surface-normal density distribution of the patterned silicon, the penetration of water into the pattern, and the distribution of a deposited film inside and outside of the etched holes. In this stud; 1,2-dilauroyl-sn-glycero-3-phosphocholine (DLPC) single bilayers were deposited on the hydrophilic patterned surface. For bilayers deposited either by vesicle fusion (VF) or by the Langmuir-Schaefer (L-S) technique, the most consistent model found to fit the data shows that the lipids form bilayer coatings on top of the substrate as well as the bottoms of the holes in an essentially conformal fashion. However, while there is a single bilayer on the unetched silicon surface, the lipids coating the bottoms of the holes form a complex bimodal structure consistent with a rough surface produced by the etching process. This study provides insight into film transfer both outside and inside regular nanopatterned features. 展开更多
关键词 thin film NANOPATTERN neutron reflectivity LIPID SELF-ASSEMBLY
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