显微镜,在空间中测试等效原理

Pierre Touboul , Manuel Rodrigues , Gilles Métris , Bernard Tatry
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引用次数: 69

摘要

由于在轨实验良好的稳态和软环境,空间等效原理测试的分辨率可以比实验室高几个数量级。预计新的实验结果将有助于四种相互作用的统一,证明额外标量相互作用的存在或参与量子引力理论的研究。显微镜太空任务是在Cnes科学计划的框架内开发的,目的是以10 - 15的精度测试自由落体的普遍性。讨论了实验的概念和设计,指出了室温仪器的主要性能驱动因素。这颗无拖曳卫星定于2004年底发射。通过其具体的技术演示,该任务将为基础物理学中其他空间任务更精确的加速度测量开辟道路。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
MICROSCOPE, testing the equivalence principle in space

The test of the equivalence principle can be performed in space with orders of magnitude better resolution than in the laboratory, because of the outstanding steady and soft environment of the in-orbit experiment. The expected new experimental results will contribute to the unification of the four interactions, demonstrate the existence of extra scalar interaction or participate in the research for a quantum gravity theory. The MICROSCOPE space mission is being developed within the framework of the Cnes scientific program with the objective of testing the universality of free fall with a 10−15 accuracy. The concept and the design of the experiment are discussed and the major performance drivers of the room temperature instrument are pointed out. The launch of the drag-free satellite is scheduled for late 2004. By its specific technology demonstration, the mission will open the way to even more accurate acceleration measurements for other space missions in fundamental physics.

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