首页> 外文期刊>Journal of the Optical Society of America, A. Optics, image science, and vision >Relativistic effects in earth-orbiting Doppler lidar return signals
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Relativistic effects in earth-orbiting Doppler lidar return signals

机译:地球多普勒激光雷达返回信号中的相对论效应

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Frequency shifts of side-ranging lidar signals are calculated to high order in the small quantities (upsilon/c), where v is the velocity of a spacecraft carrying a lidar laser or of an aerosol particle that scatters the radiation back into a detector (c is the speed of light). Frequency shift measurements determine horizontal components of ground velocity of the scattering particle, but measured fractional frequency shifts are large because of the large velocities of the spacecraft and of the rotating earth. Subtractions of large terms cause a loss of significant digits and magnify the effect of relativistic corrections in determination of wind velocity. Spacecraft acceleration is also considered. Calculations are performed in an earth-centered inertial frame, and appropriate transformations are applied giving the velocities of scatterers relative to the ground. (c) 2007 Optical Society of America.
机译:侧向激光雷达信号的频移以小数量(upsilon / c)高阶计算,其中v是运载激光雷达激光的航天器或将辐射散射回探测器的气溶胶粒子的速度(c是光速)。频移测量确定了散射粒子的地面速度的水平分量,但是由于航天器和旋转地球的速度较大,因此测得的分数频移很大。大项的减法会导致有效位数的损失,并且会放大相对论校正在确定风速方面的作用。还考虑了航天器加速度。计算是在以地球为中心的惯性系中进行的,并进行了适当的转换,以给出散射体相对于地面的速度。 (c)2007年美国眼镜学会。

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