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ASTRODYNAMICAL SPACE TEST OF RELATIVITY USING OPTICAL DEVICES I (ASTROD I)

机译:使用光学设备I(星体I)的相对论空间动力学测试

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ASTROD I is a planned interplanetary space mission with multiple goals. The primary aims are: to test general relativity with an improvement in sensitivity of over three orders of magnitude, improving our understanding of gravity and aiding the development of a new quantum gravity theory; to measure key solar system parameters with increased accuracy, advancing solar physics and our knowledge of the solar system; and to measure the time rate of change of the gravitational constant with an order of magnitude improvement and the anomalous Pioneer acceleration, thereby probing dark matter and dark energy gravitationally. It is an international project, with major contributions from Europe and China and is envisaged as the first in a series of ASTROD missions. ASTROD I will consist of one spacecraft carrying a telescope, four lasers, two event timers and a clock. Two-way, two wavelength laser pulse ranging will be used between the spacecraft in a solar orbit and deep space laser stations on Earth, to achieve the ASTROD I goals. A second mission, ASTROD (ASTROD II) is envisaged as a three-spacecraft mission which would test General Relativity to 1 ppb, enable detection of solar g-modes, measure the solar Lense-Thirring effect to 10 ppm, and probe gravitational waves at frequencies below the LISA bandwidth. In the third phase (ASTROD III or Super-ASTROD), larger orbits could be implemented to map the outer solar system and to probe primordial gravitational waves at frequencies below the ASTROD II bandwidth. This paper is based on the article Astrodynamical Space Test of Relativity Using Optical Devices I (ASTROD I)-A class-M fundamental physics mission proposal for Cosmic Vision 2015-2025 (Exp Astron (2009) 23:491-527).
机译:ASTROD I是一项计划中的具有多个目标的行星际太空任务。主要目的是:测试广义相对论,灵敏度提高三个数量级以上,增进我们对引力的理解,并帮助发展新的量子引力理论;以更高的精度测量关键的太阳系参数,提高太阳物理学和我们对太阳系的了解;并测量引力常数的时间变化率,并提高一个数量级和反常的先驱加速度,从而通过引力探测暗物质和暗能量。这是一个国际项目,来自欧洲和中国的重大贡献,被设想为一系列ASTROD任务中的第一个。 ASTROD I将由一架载有望远镜的航天器,四个激光器,两个事件计时器和一个时钟组成。在太阳轨道的航天器和地球上的深空激光站之间将使用双向,两波长的激光脉冲测距,以实现ASTROD I目标。第二个任务是ASTROD(ASTROD II),设想是一个三飞船任务,它将测试广义相对论至1 ppb,能够检测太阳g-模式,将太阳Lens-Thirring效应测量到10 ppm,并探测引力波。低于LISA带宽的频率。在第三阶段(ASTROD III或Super-ASTROD),可以实施更大的轨道以绘制外部太阳系的地图并探测低于ASTROD II带宽的原始引力波。本文基于《使用光学设备进行相对论的天文动力学空间测试》 I(ASTROD I)-《 Cosmic Vision 2015-2025》的A类M类基本物理任务提案(Exp Astron(2009)23:491-527)。

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