Frequency stability and phase noise of an improved X-band cryocooled sapphire oscillator

N. Nand, J. Hartnett
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引用次数: 2

Abstract

A previously implemented cryogenic sapphire oscillator (CSO) based on a commercial cryocooler has been modified and its frequency stability and phase noise re-measured against a nominally similar liquid helium cooled CSO in the same laboratory. Assuming both contribute equally, their frequency stability and phase noise have been evaluated. We report for the oscillator a minimum Allan deviation of 3.9 × 10−16 at 20 s, a long-term frequency drift less than 1 × 10−14/day, and a measured single sideband phase noise of −97 dBc/Hz at 1 Hz offset from the carrier. The stated performance of the cryocooled CSO is adequate for it to be deployed at a local VLBI site for comparison against the hydrogen maser which is the current reference standard.
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改进的x波段低温蓝宝石振荡器的频率稳定性和相位噪声
对先前实现的基于商用制冷机的低温蓝宝石振荡器(CSO)进行了改进,并在同一实验室中与名义上相似的液氦冷却CSO进行了频率稳定性和相位噪声的重新测量。假设两者的贡献相等,对它们的频率稳定性和相位噪声进行了评价。我们报告了振荡器在20秒时的最小艾伦偏差为3.9 × 10−16,长期频率漂移小于1 × 10−14/天,并且在距离载波1 Hz偏移处测量到的单边带相位噪声为- 97 dBc/Hz。所述的低温冷却CSO的性能足以将其部署在当地的VLBI站点,以便与目前的参考标准氢脉泽进行比较。
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Blackbody radiation shifts and magic wavelengths for atomic clock research Multiplexed optical link for ultra-stable frequency dissemination Frequency stability and phase noise of an improved X-band cryocooled sapphire oscillator Frequency shifts of colliding fermions in optical lattice clocks Theoretical and experimental study of the phase noise of opto-electronic oscillators based on high quality factor optical resonators
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