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大折射率差聚合物阵列波导光栅的设计与制作
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作者 许英朝 《厦门理工学院学报》 2010年第1期32-35,共4页
分析了阵列波导光栅的结构、原理,并在Si基衬底上根据大折射率差的新型聚合物材料设计并制作了8×8的阵列波导光栅波分复用器件.波分复用器的中心波长为1551.4nm,输出波长间隔Δλ为0.8nm.制作的器件的插入损耗在中心波长处的测试... 分析了阵列波导光栅的结构、原理,并在Si基衬底上根据大折射率差的新型聚合物材料设计并制作了8×8的阵列波导光栅波分复用器件.波分复用器的中心波长为1551.4nm,输出波长间隔Δλ为0.8nm.制作的器件的插入损耗在中心波长处的测试结果约为9dB,相邻通道的串扰测量值小于-25dB.器件的尺寸为0.9cm×1.8cm. 展开更多
关键词 阵列波导光栅 大折射率 聚合物 串扰 插入损耗
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异硫氰酸酯类化合物在混合液晶中的应用
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作者 孟劲松 吕文海 +5 位作者 员国良 张芳苗 邸玉静 丰景义 颜希哲 华瑞茂 《液晶与显示》 CAS CSCD 北大核心 2015年第2期224-228,共5页
近些年来,液晶透镜技术得到了长足的进步和广泛的应用,尤其是在立体显示技术中。液晶透镜为了获得高的光学效率和快速的响应时间,要求使用的液晶混合物具有较大的折射率各向异性、较小的旋转黏度、较大的介电各向异性以及大的K值。文中... 近些年来,液晶透镜技术得到了长足的进步和广泛的应用,尤其是在立体显示技术中。液晶透镜为了获得高的光学效率和快速的响应时间,要求使用的液晶混合物具有较大的折射率各向异性、较小的旋转黏度、较大的介电各向异性以及大的K值。文中将异硫氰酸酯类化合物引入到液晶透镜用混合液晶中,获得了具有大折射率各向异性,较大的K值、较小的旋转黏度的液晶混合物。 展开更多
关键词 液晶透镜 大折射率 异硫氰酸酯
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Study on the Refractive-Index Structure Coefficient C_N^2
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作者 阎吉祥 周仁忠 +1 位作者 俞信 毛节泰 《Journal of Beijing Institute of Technology》 EI CAS 1993年第1期19-26,共8页
Based on the regularities of temperature fluctuation,the atmo- sphere below an altitude of 71km above ground is divided into 6 sublayers. For each of them the calculation formulae of temperature and pressure are deriv... Based on the regularities of temperature fluctuation,the atmo- sphere below an altitude of 71km above ground is divided into 6 sublayers. For each of them the calculation formulae of temperature and pressure are derived.The calculated results at any altitude in the range under considera- tion agree well with the values laid down in the table of“U.S.Standard At- mosphere”.From this the formula for the refractive-index structure coeffi- cient C_N^2,of much importance in the research of adaptive optics,is obtained for the corresponding altitudes. 展开更多
关键词 atmospheric optics/adaptive optics correlative length refractiveindex structure coefficient
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Seasonal Effect on Atmospheric Refractivity in Diverse Terrains
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作者 Y.O. Olasoji M.O. Kolawole 《Journal of Environmental Science and Engineering》 2011年第11期1537-1541,共5页
Air masses in the atmosphere have contrasting temperature, humidity and moisture, which influence radio signals traversing the atmosphere. The influence of the atmosphere on refractivity is strongly determined by its ... Air masses in the atmosphere have contrasting temperature, humidity and moisture, which influence radio signals traversing the atmosphere. The influence of the atmosphere on refractivity is strongly determined by its temporal and spatial variability. This paper uses meteorological measurements to investigate the impact of meteorological structures on diverse environments evident in Nigeria. The study hypothesises that refractivity measures could serve as indicators of diurnal radio wave degradation traversing the atmosphere. 展开更多
关键词 RADIOSONDE REFRACTIVITY radio signal hydrostatic component Longley-Rice model
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Grey Self-similar Solitary Waves in Inhomogeneous Nonlinear Media
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作者 LI Hua-Mei 《Communications in Theoretical Physics》 SCIE CAS CSCD 2009年第2期279-282,共4页
This paper analyzes spatial grey self-similar solitary waves propagation and collision in graded-index nonlinear waveguide amplifiers with self-focusing and self-defocusing Kerr nonlinearities. New exact self-similar ... This paper analyzes spatial grey self-similar solitary waves propagation and collision in graded-index nonlinear waveguide amplifiers with self-focusing and self-defocusing Kerr nonlinearities. New exact self-similar solutions are found using a novel transformation and their main features are investigated by using direct computer simulations. 展开更多
关键词 grey self-similar solitary wave inhomogeneous nonlinear media COLLISION
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Profile and Character of Atmospheric Structure Constant of Refractive Index C_n^2
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作者 SUN Gang WENG Ning-Quan +1 位作者 XIAO Li-Ming WU Yi 《Atmospheric and Oceanic Science Letters》 2012年第3期270-272,共3页
Random fluctuations of turbulence bring random fluctuations of the refractive index, making the atmosphere a random fluctuation medium that destroys the coherence of light-waves. Research in atmospheric turbulence is ... Random fluctuations of turbulence bring random fluctuations of the refractive index, making the atmosphere a random fluctuation medium that destroys the coherence of light-waves. Research in atmospheric turbulence is actually the investigation of the atmospheric refractive index. The atmospheric structure constant of refractive index, C n 2 , is an important parameter denoting atmospheric turbulence. In this paper, C n 2 is measured during the day and at night and in all four seasons using a high sensitivity micro-thermal meter QHTP-2. The vertical profile of C n 2 in Hefei (0-30 km) is investigated by the analysis of experimental data. The average profile of C n 2 in Hefei exhibits conspicuous day and night differences with increased altitude. The distribution of log(C n 2 ) is nearly normal and has conspicuous seasonal differences. 展开更多
关键词 applied optics atmospheric turbulence atmospheric structure constant of refractive index variance profile
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