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中国物理学会期刊

基于镀膜四面角锥棱镜技术的上层大气风场探测研究

CSTR: 32037.14.aps.54.4065

Study of the technique of 4-face coated pyramid prism for measurement of upper atmospheric wind field

CSTR: 32037.14.aps.54.4065
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  • 阐述了“镀膜四面角锥棱镜(coating pyramid prism, CPP)”技术探测上层大气风场的原理,提出可以在四面角锥棱镜的4个面上分别按λ/4(λ波长)的步进光程差递增镀增透膜,同时获得一个干涉条纹中的4个强度值,实现上层大气风场的探测模式.对该模式下的相关参数进行了理论计算并得出结论:四面角锥棱镜的顶角必须大于24°、宽度为8mm的对称光束入射到CPP顶点能满足LF7玻璃上镀MgF2增透膜以实现大气风场探测的要 求.按9°×9°干涉仪视场和CCD4.5°×4.5°视场设计了干涉仪前后的光路,用CCD照相机并调 节定标光源Kr灯557.0nm到所需光束宽度进行了模拟实验,分别得到顶角为60°和90°的 两面镀膜棱镜在CCD上的两个干涉光斑,这两个光斑再复制即可获得CPP的4个干涉光斑,从 而证实了CPP技术探测上层大气风场的可行性.该模式发展了被动探测上层大气风场的光学遥 感探测技术.

     

    The principle of measurement of upper atmospheric wind field has been described first by using the technique of 4-face coated pyramid prism (CPP). If the anti-r efraction films is coated by λ/4(λwavelength)stepped optical path difference (OPD), there can be obtained 4 interference intensities for one fringe simultan eously to measure the upper atmospheric wind field. After correlative parameters of CPP technique are calculated, the CPP's vertex angle must be larger than 24 degree and the width of symmetric incident beam to CPP vertex may be less than 8 mm by LF7 prism and MgF2 anti-refraction films, so that it can be use d to dete ct the upper atmospheric wind for 9°×9° interferometer's field of view (FOV) and CCD 4.5°×4.5°. Finally, we made a simulation test for 2-face coated prism , two group of speckle patterns of deflection light and intensities on CCD have been obtained for prism vertex angle 60° and 90°. By copying the two-speckl e patterns to obtain CPP's four ones, it can achieve “four intensities way" for upper atmospheric wind field measurement. The test result is made sure of this way to measure the atmospheric wind. This way has developed the technique of pas sive measurement of wind field.

     

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