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Apollo: A new push in lunar laser ranging

机译:阿波罗:月球激光测距的新突破

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摘要

APOLLO (the Apache Point Observatory Lunar Laser-ranging Operation) is a new effort in lunar laser ranging that uses the Apollo-landed retroreflector arrays to perform tests of gravitational physics. It achieved its first range return in October 2005, and began its science campaign the following spring. The strong signal (> 2500 photons in a ten-minute period) translates to one-millimeter random range uncertainty, constituting at least an order-of-magnitude gain over previous stations. One-millimeter range precision will translate into order-of-magnitude gains in our ability to test the weak and strong equivalence principles, the time rate of change of Newton's gravitational constant, the phenomenon of gravitomagnetism, the inverse-square law, and the possible presence of extra dimensions. An outline of the APOLLO apparatus and its initial performance is presented, as well as a brief discussion on future space technologies that can extend our knowledge of gravity by orders of magnitude.
机译:阿波罗(Apache Point天文台月球激光测距操作)是月球激光测距中的一项新成果,它使用阿波罗着陆的后向反射器阵列进行引力物理测试。它于2005年10月实现了首次射程恢复,并于次年春天开始了科学攻势。强信号(在十分钟的时间内> 2500个光子)转换为一毫米的随机范围不确定性,至少比以前的电台构成了一个数量级的增益。一毫米范围内的精度将转化为我们测试弱和等效原理,牛顿引力常数的时间变化率,引磁现象,平方反比定律以及可能的能力的数量级增益。存在额外的尺寸。概述了APOLLO装置及其初始性能,并简要讨论了可以将我们的重力知识扩展几个数量级的未来太空技术。

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