Light refraction in the Earth’s atmosphere III. Inferior mirages: images locus

Alicia Cruzado, C. Alejandro Paola, A. Cesanelli
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Abstract

Our main goal is to find the locus of images formed as a result of an inferior mirage. To achieve our goal we show, at first, that, provided the beam entering a detection system has a small aperture, the image of a point object formed by that system in a vertical plane passing through the object is a point, regardless of whether the image formed by an optical system previously traversed by the beam has generated a non-point image of the object. Secondly, we show that the different images formed by the detection system, as its position relative to the object varies, are located on the caustic curve corresponding to the previously traversed optical system. Next, we have found the analytical expressions of the caustic curves corresponding to two particular cases, one of them being the inferior mirages. These expressions have been found by means of the Legendre antitransform of the asymptotic lines to the paths of light rays reaching the detector. For the case of inferior mirages, we have studied in detail the locus of the images in each vertical plane passing through the object as a function of the position of the object relative to the ground, its position relative to the detector, and the atmospheric conditions. Finally, we get somewhat into the matter of the images position as they would be seen by a casual observer of an inferior mirage.
地球大气中的光折射 III.下层海市蜃楼:图像位置
我们的主要目标是找到下海市蜃楼形成的图像的位置。为了实现我们的目标,我们首先证明,只要进入探测系统的光束有一个小孔径,该系统在穿过物体的垂直面上形成的点状物体的图像就是一个点,而不管该光束之前穿过的光学系统所形成的图像是否产生了该物体的非点状图像。其次,我们证明了当检测系统相对于物体的位置发生变化时,它所形成的不同图像都位于与之前穿过的光学系统相对应的苛求曲线上。接下来,我们找到了与两种特殊情况相对应的苛求曲线的分析表达式,其中一种是下蜃景。这些表达式是通过对到达探测器的光线路径的渐近线进行 Legendre 反变换而得到的。对于下海市蜃楼的情况,我们详细研究了穿过物体的每个垂直面上的图像位置与物体相对于地面的位置、物体相对于探测器的位置以及大气条件的函数关系。最后,我们在一定程度上探讨了下沉海市蜃楼的普通观察者所看到的图像位置问题。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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