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二维高效光子晶体偏振分束器 被引量:5
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作者 孙露露 沈义峰 +3 位作者 王娟 周杰 张园 唐刚 《光子学报》 EI CAS CSCD 北大核心 2010年第10期1795-1799,共5页
为解决透射型偏振分束器透射效率低、高入射角度依赖的缺点,利用二维光子晶体平板设计了一种高效偏振分束器.采用的光子晶体是由空气中周期性排列的蜂窝格子GaAs介质柱构成.该偏振器对一种偏振光(TE偏振)正常折射,而对另一种偏振(TM偏振... 为解决透射型偏振分束器透射效率低、高入射角度依赖的缺点,利用二维光子晶体平板设计了一种高效偏振分束器.采用的光子晶体是由空气中周期性排列的蜂窝格子GaAs介质柱构成.该偏振器对一种偏振光(TE偏振)正常折射,而对另一种偏振(TM偏振)负折射,从而实现两种偏振模式在空间上分离.为提高其透射效率,在光子晶体平板表面引入了消反层,并对相关参量进行优化.二维有限时域差分模拟结果显示,在较宽的角度范围内(约20°),约化圆频率处在ω=0.20~0.23×2πc/a范围内,分束器对TE和TM偏振光的透射强度都能达到95%以上. 展开更多
关键词 光子晶体 蜂窝格子 偏振分束器 消反层
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Optimization of Multi-layer AR Coatings for GaInP/GaAs Tandem Solar Cells 被引量:1
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作者 ZHUCheng ZHANGYong-gang LIAi-zhen 《Semiconductor Photonics and Technology》 CAS 2004年第1期44-47,共4页
The AR coatings for GaInP/GaAs tandem solar cell are simulated.Results show that,under the condition of the lack of suitable encapsulation, a very low energy loss could be reached on MgF2/ZnS system; in the case of gl... The AR coatings for GaInP/GaAs tandem solar cell are simulated.Results show that,under the condition of the lack of suitable encapsulation, a very low energy loss could be reached on MgF2/ZnS system; in the case of glass encapsulation,the Al2O3/ZrO2 and Al2O3/TiO2 systems are appropriate choice; for AlInP window layer,the thickness of 30 nm is suitable. 展开更多
关键词 Tandem solar cells Antireflective coating GaInP/GaAs
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Ignition, flame propagation and extinction in the supersonic mixing layer flow 被引量:7
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作者 ZHANG YunLong WANG Bing ZHANG HuiQiang 《Science China(Technological Sciences)》 SCIE EI CAS 2014年第11期2256-2264,共9页
The supersonic mixing layer flow,consisting of a relatively cold,slow diluted hydrogen stream and a hot,faster air stream,is numerically simulated with detailed transport properties and chemical reaction mechanisms.Th... The supersonic mixing layer flow,consisting of a relatively cold,slow diluted hydrogen stream and a hot,faster air stream,is numerically simulated with detailed transport properties and chemical reaction mechanisms.The evolution of the combustion process in the supersonic reacting mixing layer is observed and unsteady phenomena of ignition,flame propagation and extinction are successfully captured.The ignition usually takes place at the air stream side of braid regions between two vortexes due to much higher temperature of premixed gases.After ignition,the flame propagates towards two vortexes respectively located on the upstream and downstream of the ignition position.The apparent flame speed is 1569.97 m/s,which is much higher than the laminar flame speed,resulting from the effects of expansion,turbulence,vortex stretching and consecutive ignition.After the flame arrives at the former vortex,the flame propagates along the outer region of the vortex in two branches.Then the upper flame branch close to fuel streamside distinguishes gradually due to too fuel-riched premixed mixtures in the front of the flame and the strong cooling effect of the adjacent cool fuel flow,while the lower flame branch continues to propagate in the vortex. 展开更多
关键词 supersonic mixing layer IGNITION flame propagation EXTINCTION
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