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Lunar laser ranging by optical transponder collocated with VLBI radio sources on the moon

机译:光学应答器将月球激光测距与VLBI无线电源并置在月球上

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Abstract: The lunar laser ranging (LLR) has been dependent on the retro-reflectors placed on the Moon since the past three decades before. In spite of the technical improvement, regular observations are performed by a limited number of stations due to the weak echo. To allow more opportunities for observations, it is most effective to place modern device on the Moon. Since a Japanese second lunar probe is planned to be launched in 2006, the ideas are collected for scientific purposes. It is described here that an optical transponder on the Moon would enhance the possibility of LLR observations to a large degree. It is also proposed to have three radio sources on the Moon to determine the angular component perpendicular to the Earth-Moon vector and librations. One of the most important scientific targets for the proposed mission is a relativistic experiment which was not attained by a conventional LLR.!19
机译:摘要:自从过去的三十年以来,月球激光测距(LLR)一直依赖于放置在月球上的后向反射器。尽管技术上有所改进,但由于回声较弱,因此只能在有限数量的站点进行常规观测。为了提供更多的观察机会,将现代设备放置在月球上最有效。由于计划在2006年进行日本的第二次月球探测器,因此收集这些想法是出于科学目的。此处描述了月球上的光学转发器将在很大程度上增强LLR观测的可能性。还建议在月球上设置三个无线电源,以确定垂直于地月矢量和自由度的角分量。拟议任务的最重要科学目标之一是相对论性实验,这是常规LLR所无法实现的!19

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