首页> 外文期刊>Moscow University Physics Bulletin >The Effect of the Relativistic Transformation Law of Angles on Laser Ranging of Satellites Moving in Circular Orbits Equipped with a Single Retroreflector
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The Effect of the Relativistic Transformation Law of Angles on Laser Ranging of Satellites Moving in Circular Orbits Equipped with a Single Retroreflector

机译:相对论的变形法在配备单个后向图的圆形轨道中卫星激光测距的影响

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摘要

It is shown that due to the relativistic transformation law of angles, a laser pulse reflected from a moving retroreflector propagates not strictly back, but at a small angle to the direction of the laser station. For this reason, the ray located on the periphery of a pulse reaches the receiving telescope of the laser station instead of the central ray of a pulse. As a result, the flux of electromagnetic energy received by the laser station is certainly less than the flux of energy in the vicinity of the central ray. The energy flux attenuation coefficient is assessed on the basis of numerical analysis. It is shown that if the receiving telescope is separated from the laser station in order to be mobile and is moving along the Earth's surface so that the center of each spot formed by a pulse of the reflected light hits the telescope, then the electromagnetic energy flux during laser probing of the satellite will be higher by more than 100 times in comparison with the energy flux received by the stationary telescope of the laser station. From our study it follows that the maximum speed of motion of the centers of spots on the Earth's surface does not exceed 8 km/h.
机译:结果表明,由于相位性的变形规律,从移动后向反射器反射的激光脉冲不会严格地传播,但是以小角度到激光站的方向。因此,位于脉冲周边的光线到达激光站的接收望远镜而不是脉冲的中心光线。结果,激光站接收的电磁能量的通量肯定小于中心射线附近的能量的磁通量。在数值分析的基础上评估能量通量衰减系数。结果表明,如果接收望远镜与激光站分离以便移动并且沿着地球表面移动,使得通过反射光的脉冲形成的每个光点的中心撞击望远镜,则电磁能量通量达到电磁能量通量在激光探测期间,卫星将比激光站的固定式望远镜接收的能量通量相比,卫星的探测将更高100倍。从我们的研究来看,地球表面斑点中心的最大运动速度不超过8公里/小时。

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