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Second generation 50 K dual-mode sapphire oscillator

机译:第二代50 K双模蓝宝石振荡器

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摘要

Low-temperature, high-precision sapphire resonators exhibit a turning point in mode frequency-temperature dependence at around 10 K. This, along with sapphire's extremely low dielectric losses at microwave frequencies, results in oscillator fractional frequency stabilities on the order of 10/sup -15/. At higher temperatures the lack of a turning point makes single-mode oscillators very sensitive to temperature fluctuations. By exciting two quasi-orthogonal whispering gallery (WG) modes in a single sapphire resonator, a turning point in the frequency-temperature dependence can be found in the beat frequency between the two modes. A temperature control technique based on mode frequency-temperature dependence has been used to maintain the sapphire at this turning point and the fractional frequency instability of the beat frequency has been measured to be at a level of 4.3 /spl times/ 10/sup -14/ over 1 s, dropping to 3.5 /spl times/ 10/sup -14/ over 4 s integration time.
机译:低温,高精度蓝宝石谐振器在约10 K的频率下呈现出模态频率-温度依赖性的转折点。这与蓝宝石在微波频率下的极低介电损耗有关,导致振荡器的分数频率稳定性约为10 / sup -15 /。在较高温度下,缺乏转折点使单模振荡器对温度波动非常敏感。通过在单个蓝宝石谐振器中激发两个准正交耳语画廊(WG)模式,可以在两个模式之间的拍频中找到频率-温度依赖性的转折点。已经使用基于模式频率-温度依赖性的温度控制技术将蓝宝石维持在此转折点,并且拍频的分数频率不稳定性已测量为4.3 / spl times / 10 / sup -14 /超过1 s,在4 s的积分时间内下降到3.5 / spl次/ 10 / sup -14 /。

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