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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >A compensated multi-pole linear ion trap mercury frequency standard for ultra-stable timekeeping
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A compensated multi-pole linear ion trap mercury frequency standard for ultra-stable timekeeping

机译:补偿式多极线性离子阱汞频率标准,实现超稳定计时

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The multi-pole linear ion trap frequency standard (LITS) being developed at the Jet Propulsion Laboratory (JPL) has demonstrated excellent short- and long-term stability. The technology has now demonstrated long-term field operation providing a new capability for timekeeping standards. Recently implemented enhancements have resulted in a record line Q of 5 times 1012 for a room temperature microwave atomic transition and a short-term fractional frequency stability of 5 times 10-14/tau1/2. A scheme for compensating the second order Doppler shift has led to a reduction of the combined sensitivity to the primary LITS systematic effects below 5 times 10-17 fractional frequency. Initial comparisons to JPL's cesium fountain clock show a systematic floor of less than 2 times 10-16. The compensated multi-pole LITS at JPL was operated continuously and unattended for a 9-mo period from October 2006 to July 2007. During that time it was used as the frequency reference for the JPL geodetic receiver known as JPLT, enabling comparisons to any clock used as a reference for an International GNSS Service (IGS) site. Comparisons with the laser-cooled primary frequency standards that reported to the Bureau International des Poids et Mesures (BIPM) over this period show a frequency deviation less than 2.7 times 10-17/day. In the capacity of a stand-alone ultra-stable flywheel, such a standard could be invaluable for long-term timekeeping applications in metrology labs while its methodology and robustness make it ideal for space applications as well.
机译:由喷气推进实验室(JPL)开发的多极线性离子阱频率标准(LITS)具有出色的短期和长期稳定性。现在,该技术已经证明了长期的现场操作,为计时标准提供了新的功能。最近实施的增强功能导致室温微波原子跃迁的记录线Q为1012的5倍,短期分数频率稳定性为10-14 / tau1 / 2的5倍。补偿二阶多普勒频移的方案已导致对主LITS系统效应的组合灵敏度降低到10-17分数频率的5倍以下。与JPL铯喷泉钟的初步比较显示,系统底限小于10-16的2倍。在2006年10月至2007年7月的9个月内,JPL的补偿多极点LITS连续无人值守运行。在此期间,它用作JPL大地测量接收机JPLT的频率参考,可以与任何时钟进行比较用作国际GNSS服务(IGS)网站的参考。在这段时期内,与国际勃艮第计量局(BIPM)报告的激光冷却一次频率标准的比较显示,频率偏差小于2.7乘以10-17 /天。就一个独立的超稳定飞轮而言,这种标准对于计量实验室的长期计时应用可能是无价的,而其方法论和坚固性使其也非常适用于太空应用。

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