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光学综合孔径望远镜成像分析及计算机仿真 总被引:13,自引:9,他引:4
阐述了光学综合孔径(OSA)望远镜成像原理以及综合孔径望远镜的几种实现形式;采用快速傅里叶变换(FFT)算法得到了任意子孔径综合模式下的点扩展函数(PSF)和光学传递函数(OTF)分布;从子孔径结构排列、共相位、图像恢复几个方面论述了光学综合孔径的成像特征。初步分析了稀疏率、填充因子、“实际截止频率”等因素对光学综合孔径望远镜成像的影响。分析和仿真结果表明:光学综合孔径通过相干成像不但可以突破传统单孔径系统的口径局限获得极高的成像分辨率,而且对于实现空间光学遥感系统轻量化和模块化都具有重要意义。 相似文献
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Study on irradiation-induced defects in GaAs/AlGaAs core–shell nanowires via photoluminescence technique 下载免费PDF全文
To gain a physical insight into the radiation effect on nanowires(NWs), the time resolved photoluminescence(TRPL)technique is used to investigate the carrier dynamic behaviors in GaAs/AlGaAs core–shell NWs before and after 1-MeV proton irradiation with fluences ranging from 1.0 × 10~(12) cm~(-2) to 3.0 × 10~(13) cm~(-2). It is found that the degradations of spectral peak intensity and minority carrier lifetime show similar trends against irradiation fluence, which is closely related to the displacement defects induced by irradiation. We also find that the proton irradiation-induced defects behave as Shockley–Read–Hall(SRH) recombination center trapping free carriers. Finally, the defect concentration could be estimated through measuring the minority carrier lifetime. 相似文献
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为了更好地开发和利用空间资源,各国竞相通过向空间发射卫星、空间站、航天飞机等航天器来建立探测站点和通信网络以占据具有最大优势的位置,其中空间光电系统在探索新资源方面起到关键的作用.点对点的距离远、空间辐射强、温差较大等空间环境因素严重影响着光电系统性能的发挥,也向空间光电系统的稳定性和可靠性提出了挑战.本文提出将具有较高的探测灵敏度、工作温度、抗辐射能力和响应带宽的新型量子点红外探测器应用于空间光电系统,阐述了量子点红外探测器的基本工作原理和优点,并讨论了量子点红外探测器在空间应用的技术要求,分析了其在空间的激光雷达、卫星光通信和成像或者非成像系统中的应用. 相似文献
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We demonstrate that the GaAs/AlGaAs nanowires(NWs) ensemble is fabricated into photo-detectors. Current–voltage(I–V) characteristics are measured on Ga As/Al Ga As core–shell ensemble NW photo-detectors at room-temperature before and after 1-MeV proton irradiation with fluences from 1.0 × 10~(13) cm~(-2) to 5.0 × 10~(14) cm~(-2). The degradation of photocurrent suggests that the point defects induced by proton radiation could cause both carrier lifetime and carrier mobility to decrease synchronously. Comparing with a GaAs quantum well, the degradations of light and dark current for the irradiated NWs photo-detector indicate that NWs material is a preferable potential candidate for space applications. 相似文献
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强光辐射技术是一项技术复杂、特点突出的高新尖端技术,在红外对抗中有着重要的应用。在爆炸激励等离子体产生强光辐射时,发光工质材料及其初始参数的选择成为一项关键技术,他们对辐射功率有着重要的影响。介绍了爆炸激励等离子体产生强光辐射功率的计算方法,用这种计算方法对各种发光工质的辐射功率进行计算,选择出了一种合适的发光工质的材料。分析了在产生强光辐射过程中发光工质的材料、初始参数对辐射功率的影响。推导出辐射功率与这些参数的函数关系,绘制了相应的关系曲线,通过特性曲线分析选择出适宜的初始参数。 相似文献
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