首页> 外文会议>Frequency Control Symposium and PDA Exhibition Jointly with the 17th European Frequency and Time Forum, 2003. Proceedings of the 2003 IEEE International >The progress in the development of a solid nitrogen cooled dual-mode frequency-temperature-compensated sapphire-resonator oscillator
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The progress in the development of a solid nitrogen cooled dual-mode frequency-temperature-compensated sapphire-resonator oscillator

机译:固态氮冷却双模频率温度补偿蓝宝石谐振器的开发进展

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A dual-mode single crystal sapphire resonator with a frequency-temperature turning point at approximately 50.6 K has been designed (patent pending). It utilizes the inherent anisotropy of the temperature coefficient of frequency of two orthogonally polarized quasi-TE/TM modes separated by approximately 3.5 GHz as the oscillator output. The Q-factors of both modes have been measured to be both around 10/sup 8/. The dual mode oscillator was constructed as two individual loop oscillators, each connected to the cryogenic resonator via separate coaxial cables and coupling probes in transmission. The probes were oriented to maximize coupling to the design mode and minimize coupling to the other orthogonally polarized mode. The loop oscillators were operated with Pound locked servos. The beat frequency between the oscillators was measured against a HP8673 synthesizer referenced to an oscilloquartz 8600 OCXO stable reference. A fractional frequency Allan deviation of about 7/spl times/10/sup -13///spl tau//sup 1/2 / was obtained from 1 s to 26 s. Above 26 s the measurement was limited by the noise floor of the measurement system.
机译:设计了一种双模单晶蓝宝石谐振器,其频率温度转折点约为50.6 K(正在申请专利)。它利用相隔约3.5 GHz的两个正交极化的准TE / TM模式的频率温度系数的固有各向异性作为振荡器输出。两种模式的Q因子都被测量为大约10 / sup 8 /。双模振荡器被构造为两个单独的环形振荡器,每个通过单独的同轴电缆和传输中的耦合探头连接到低温谐振器。探针经过定向,以最大程度地耦合至设计模式,并最大程度地减少与其他正交极化模式的耦合。环形振荡器使用磅锁定伺服器进行操作。振荡器之间的拍频是通过参考振荡器石英8600 OCXO稳定基准的HP8673合成器测得的。从1s至26s获得约7 / spl次/ 10sup -13 /// spl tau // sup 1/2 /的频率Allan偏差。在26 s以上,测量受到测量系统本底噪声的限制。

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