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Inaugural Article: Experiments with probe masses

机译:开篇文章:探针质量实验

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摘要

It is reasonable to regard the experiments performed by C. Coulomb and H. Cavendish in the end of the 18th century as the beginning of laboratory experimental physics. These outstanding scientists have measured forces (accelerations) produced by electric charges and by gravitational “charges” on probe masses that were attached to torque balance. Among the variety of different research programs and projects existing today, experiments with probe masses are still playing an important role. In this short review, the achieved and planned sensitivities of very challenging LIGO (Laser Interferometer Gravitational wave Observatory) and LISA (Laser Interferometer Space Antennae) projects are described, and a list of nonsolved problems is discussed as well. The role of quantum fluctuations in high precision measurements is also outlined. Apart from these main topics, the limitations of sensitivity caused by cosmic rays and the prospects of clock frequency stability are presented.
机译:将C. Coulomb和H. Cavendish在18世纪末进行的实验视为实验室实验物理学的开始是合理的。这些杰出的科学家测量了由电荷和重力平衡所产生的探针质量产生的力(加速度)。在当今存在的各种不同的研究计划和项目中,以探针质量进行的实验仍然发挥着重要作用。在这篇简短的评论中,描述了非常具有挑战性的LIGO(激光干涉仪引力波天文台)和LISA(激光干涉仪空间天线)项目的已实现和计划的灵敏度,并且还讨论了一系列未解决的问题。还概述了量子涨落在高精度测量中的作用。除了这些主要主题外,还提出了宇宙射线引起的灵敏度局限性和时钟频率稳定性的前景。

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