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作 者:万建杰[1] 赵鑫婷 WAN Jianjie;ZHAO Xinting(College of Physics and Electronic Engineering,Northwest Normal University,Lanzhou Gansu 730070)
机构地区:[1]西北师范大学物理与电子工程学院
出 处:《物理与工程》2019年第4期23-28,34,共7页Physics and Engineering
基 金:甘肃省自然科学基金青年科技计划(1506RJYA131);西北师范大学青年教师科研能力提升计划(NWNU-LKQN-10-7);西北师范大学物理与电子工程物理学科科研创新团队项目资助
摘 要:运用费马原理推导出主轴上物点经旋转二次曲面反射和折射的会聚光线方程和发散光线方程,并在近轴条件下得到相应的实像和虚像的物像公式。结果表明主轴上物点经旋转二次曲面反射和折射的会聚光线方程与发散光线方程不同,而实像和虚像在新笛卡尔坐标系中的物像公式具有相同的形式。另外,当偏心率等于零时,所有方程均退化到球面界面的形式。Fermat's principle is a basic principle in geometrical optics,which means that the actual trajectory in the space depends on the extremum of the optical path.Based on the Fermat's principle,in this paper,a method has been given to directly obtain the equations for the practical optical path in reflections and refractions at the rotational conicoid boundary for the object point inside the principal axis,and then the object-image formulas have also been derived in the condition of axial ray.The present results show the equations for divergent lines are different from those for convergent lines,but the object-image formula of the real image and the virtual image has the same form in the framework of new Cartesian coordinates.In addition,all the equations degenerate to the form of spherical interface,when the eccentricity equals zero.
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