首页> 外文会议>Frequency Control Symposium, 1996. 50th., Proceedings of the 1996 IEEE International. >A measurement of the period stability of a free pendulum in vacuum
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A measurement of the period stability of a free pendulum in vacuum

机译:真空中自由摆的周期稳定性的量度

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High period stabilities can be expected of a fiber suspended light pendulum swinging freely in vacuum, mainly because of the extremely high Q factors (<10/sup 5/) obtainable in this almost frictionless mechanical oscillator. In this paper, the modelization and the projected stability limitations of such a system are discussed. Both the physical arrangements and the electronic data collection solutions adopted in the experimental realization of a prototype pendulum apparatus are described, and sample series of period measurements are reported, analyzed and discussed. Mechanical instrumental noise (no isolation against vibrations was provided) appears to limit the Allan deviation of post modelization residuals with a white noise of a few /spl mu/s per period, which masks all projected period measurement stability limitations. It is argued that this observed noise is generated by instability in the position of the period detector, and possible solutions to this problem are proposed.
机译:可以预期在真空中自由摆动的光纤悬浮光摆的高周期稳定性,这主要是由于在这种几乎无摩擦的机械振荡器中可获得极高的Q因子(<10 / sup 5 /)。在本文中,讨论了这种系统的建模和预计的稳定性局限性。描述了在原型摆式装置的实验实现中采用的物理布置和电子数据收集解决方案,并报告,分析和讨论了周期测量的样本系列。机械仪器噪声(未提供隔离措施)似乎限制了建模后残差的Allan偏差,每周期几个/ splμs/ s的白噪声,这掩盖了所有预计的周期测量稳定性限制。有人认为,这种观测到的噪声是由周期检测器位置的不稳定性产生的,并提出了解决该问题的方法。

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