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Integral imaging is a three dimensional(3D)display technology without any additional equipment.A new system is proposed in this paper which consists of the elemental images of real images in real mode(RIRM)and the ones of virtual images in real mode(VIRM).The real images in real mode are the same as the conventional integral images.The virtual images in real mode are obtained by changing the coordinates of the corresponding points in elemental images which can be reconstructed by the lens array in virtual space.In order to reduce the spot size of the reconstructed images,the diffuser in conventional integral imaging is given up in the proposed method.Then the spot size is nearly1/20 of that in the conventional system.And an optical integral imaging system is constructed to confirm that our proposed method opens a new way for the application of the passive 3D display technology.  相似文献   
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为了更加准确地研究薄包层CLPFG(啁啾长周期光纤光栅)的传输与色散特性,仿真分析了单轴晶体光纤的二、三层介质模型所得纤芯模有效折射率的差别以及中心波长的差别,并基于该差别,采用数值分析的方法研究不同包层半径、包层模序对CLPFG色散性能的影响。结果表明,当单轴晶体光纤包层半径与包层模序较小时,两种光纤介质模型的纤芯模有效折射率有较大差别。对于两种介质模型的光纤光栅,降低包层半径或增大包层模序数都有利于增大色散。文章的分析方法和结论为CLPFG的分析和设计提供了理论依据。  相似文献   
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