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全金属反射光学系统主镜的集成分析 被引量:3
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作者 任栖锋 沈忙作 《光电工程》 EI CAS CSCD 北大核心 2005年第12期55-58,共4页
光学集成分析是对外界力或热作用下系统光学性能的分析.全金属反射光学系统主镜的集成分析包括:在AutoCAD和Pro/E中进行结构设计,建立模型,于Ansys中进行有限元分析,在 Zemax中进行光学分析.分析结果表明,横向20g加速度作用下主镜轴向... 光学集成分析是对外界力或热作用下系统光学性能的分析.全金属反射光学系统主镜的集成分析包括:在AutoCAD和Pro/E中进行结构设计,建立模型,于Ansys中进行有限元分析,在 Zemax中进行光学分析.分析结果表明,横向20g加速度作用下主镜轴向变形最大,为0.869E-6m;轴向20g加速度作用下主镜的应力最大,为1.19MPa;在重力作用下,系统最大波前值分别为0.0387λ,在系统对光学性能0.05λ 的要求范围内;在5~20g加速度范围内,主镜变形对系统RMS点尺寸的影响成近似的线性;近轴视场内,横向加速度对系统RMS点尺寸的影响比轴向的略小.光学集成分析可为光学系统的设计与评价提供更确切的依据. 展开更多
关键词 全反射光学系统 结构分析 分析 光学性能分析 有限元法 光学集成分析
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Crystal structures,two-photon absorption and theoretical calculation of a series of bis-vinylpyridine compounds synthesized by one-step solid state reaction
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作者 LI DongMei ZHANG Qiong +7 位作者 A.M.Showkot HOSSAIN SUN Mei WU JieYing YANG JiaXiang ZHOU HongPing TAO LiMin WANG ChuanKui TIAN YuPeng 《Science China Chemistry》 SCIE EI CAS 2011年第5期730-736,共7页
Three bis-vinylpyridine compounds (4,4′-bis(2-vinylpyridine)biphenyl L1,4,4′-bis(3-vinylpyridine) biphenyl L2,and 4,4′-bis (4-vinylpyridine)biphenyl L3) were synthesized by one-step solid-state reactions at room te... Three bis-vinylpyridine compounds (4,4′-bis(2-vinylpyridine)biphenyl L1,4,4′-bis(3-vinylpyridine) biphenyl L2,and 4,4′-bis (4-vinylpyridine)biphenyl L3) were synthesized by one-step solid-state reactions at room temperature,giving nearly quantitative yields. The compounds obtained were fully characterized by IR,MS and NMR spectroscopies. The structures of L2 and L3 were determined by single crystal X-ray diffraction analysis. No noticeable solvatochromism was observed in either one-photon absorption or one-photon excited fluorescence spectra. All of the compounds have high fluorescence quantum yields and long fluorescence lifetime. The linear and nonlinear optical properties of the compounds were investigated both experimentally and theoretically. Interestingly,the position of the nitrogen atom from pyridine influences their two-photon absorption across-sections. 展开更多
关键词 two-photon absorption one-step solid-state reaction high quantum yield pyridine derivatives
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