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It is important to predict the intensity distribution in focusing plane for designing the X-ray compound refractive lenses. On the basis of analyzing the structure of X-ray compound lenses and comparing it with Praunhofer diffraction system, it is concluded that the X-ray focusing system can be regarded as a kind of Praunhofer diffraction system. Therefore, a method based on Fourier spectrum analysis is presented to predict the intensity distribution in the focusing plane for the X-ray lenses. A brief analysis on the relationship between the parameters of X-ray lenses and their focusing performance is also given in this paper.  相似文献   
2.
Organic electroluminescent (EL) devices were firstly demonstrated in the 1960s, but great interest was not shown until 1987 that Tang and Vanslyke succeeded in developing an effective device using tris(8-hydroxyquin oline) aluminum (Alq3) as the emitter[1-4]. Since then, different kinds of organic dyes, chelate metal com- plex and polymers were synthesized to fabricate higher efficiency devices. Polymers containing rare earth have been used to fabricate the full-color devices because the ver…  相似文献   
3.
It is important to predict the intensity distribution in focusing plane for designing the X-ray compound refractive lenses. On the basis of analyzing the structure of X-ray compound lenses and comparing it with Fraunhofer diffraction system, it is concluded that the X-ray focusing system can be regarded as a kind of Fraunhofer diffraction system. Therefore, a method based on Fourier spectrum analysis is presented to predict the intensity distribution in the focusing plane for the X-ray lenses. A brief analysis on the relationship between the parameters of X-ray lenses and their focusing performance is also given in this paper.  相似文献   
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郭淑琴  刘印平  朱广信 《光子学报》2007,36(7):1207-1210
设计一种新型光子晶体光纤,可在300 nm带宽范围内实现近零超平坦色散特性.光纤端面上所有空气孔按照通常的三角形规则均匀排列,中央位置十三个排列成雪花形的空气孔小于其它空气孔,这些孔共同构成光纤的纤芯.这类晶芯型光子晶体光纤与传统光子晶体光纤相比具有较大的模场面积,尤其是,通过最佳化匹配晶芯和包层中的空气孔大小可以在300 nm带宽范围内实现超平坦化色散特性,甚至可得到近零色散的平坦化色散曲线。尽管光纤的晶芯为雪花状,但近场很快会演化为类高斯型场分布.  相似文献   
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