钙离子光时标守时技术研究
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TH714

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国家计量项目(145BZB210037001X)资助


Research on the optical time scale based on an optical clock with the single 40Ca + ion
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    摘要:

    近年来光学频率标准(光钟)技术快速发展,国际时间频率咨询委员会计划于 2030 年用光钟重新定义“秒”,并提出了 技术路线,光时标的研究也成为时间频率领域的研究热点。 利用钙离子光钟驾驭微波氢钟,开展高精度光时标信号 TS(Ca + )产 生技术研究。 结果表明,钙离子光钟准连续稳定运行率可达 87% ,稳定度达 8×10 -17 / day。 对光钟和氢钟的频率比对测量分别 采用微波频率锁定方案(上转换)和光生超稳微波方案(下转换),上转换方案引入了并放大了噪声,测量数据比氢钟稳定度差, 而下转换方案产生超稳微波,测量数据频率稳定度与氢钟几乎重合,实现了光钟对氢钟的准确测量。 将测量得到的频差数据直 接置入相位微跃计,产生光时标 TS(Ca + ),独立运行的光时标 TS(Ca + )在一个月内与 UTC 偏差保持在 0. 6 ns 以内。 研究成果 为报送秒定义数据和驾驭自由原子时 TAI 提供技术基础,为提升我国光时标守时能力提供了宝贵的技术支持和工程经验。

    Abstract:

    Optical atomic clocks have been improved greatly in recent years. The Consultative Committee for Time and Frequency (CCTF) proposes the redefinition of the second in the International System of Units SI based on the optical clocks by 2030. The technology plans and practical steps are discussed. Therefore, the development of optical time scales with optical clocks and microwave clocks is the leading research topic at home and abroad. By an optical clock with a single 40Ca + ion (TOC-729) steering a microwave clock H, we study the optical time scale TS (Ca + ). The uptime of this TOC-729 is 87% over 7 months, and the frequency instability is 8E-17/ day expressed by the Allan deviation. There are two measurement methods of the optical clock TOC-729 relative to the microwave clock H, namely locking an optical frequency to a microwave clock frequency (the up-converting method) and conversion of an optical clock frequency into the RF range (the down-converting method). The up-converting method amplifies noises from the microwave clock H. The frequency instability of measurement data is inferior to the microwave clock H. For the down-converting method, the frequency instability of measurement data is almost the same as the microwave clock H, showing that the optical clock can accurately measure the microwave clock H with this method. The free-running H clock is compared with the signal down-converted from TOC-729 by recording the phase difference, and the frequency offset in H clock frequency is corrected by a phase micro stepper. The optical time scale (Ca + ) is independent, which steering to UTC is 0. 6ns in a month. The research is significant to establish and maintain the international time scale TAI with highly stable optical standards redefining the second, and the work can also improve and develop the national time scales in China.

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史丰丰,程梦飞,王德豪,徐金锋,李国俊.钙离子光时标守时技术研究[J].仪器仪表学报,2024,44(2):145-151

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  • 在线发布日期: 2024-05-14
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