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New method to build a high stability sapphire oscillator from the temperature compensation of the difference frequency between modes of orthogonal polarization

机译:利用正交极化模之间频率差的温度补偿建立高稳定性蓝宝石振荡器的新方法

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摘要

A new method to construct a high stability sapphire oscillator is presented. The method relies on the anisotropic fractional temperature coefficients of frequency (TCF) of orthogonally polarized modes. We show that it is possible to design a resonator with transverse electric and magnetic modes at different frequencies, but with the same TCF in units hertz per kelvin, resulting in temperature compensation of the difference frequency. Compensation was demonstrated between 50 to 77 K by measuring the difference frequency of two microwave oscillators frequency locked to orthogonally polarized whispering gallery modes. Curvature of the compensation points was measured to be 1 to 3 /spl times/ 10/sup -8/ K/sup -2/ between 50 and 77 K. This technique enables the construction of temperature compensated oscillators at any temperature and does not require dielectric, paramagnetic, or mechanical compensation techniques. Considering the above parameters, we show that it is possible to construct oscillators with fractional frequency instability at /spl tau/ = 1 s, of order 7.6 /spl times/ 10/sup -15/ at solid nitrogen temperature (/spl sim/50 K).
机译:提出了一种构造高稳定性蓝宝石振荡器的新方法。该方法依赖于正交极化模式的频率的各向异性分数温度系数(TCF)。我们表明,可以设计出在不同频率下具有横向电模式和磁模式的谐振器,但具有以每开尔文赫兹为单位的相同TCF,从而可以对不同频率进行温度补偿。通过测量两个锁定在正交极化的耳语回廊模式的微波振荡器的差频,可以在50至77 K之间进行补偿。补偿点的曲率经测量为50到77 K之间的1到3 / spl次/ 10 / sup -8 / K / sup -2 /。这种技术可以在任何温度下构造温度补偿振荡器,不需要介电,顺磁或机械补偿技术。考虑到以上参数,我们表明可以构造在固体氮气温度下/ spl tau / = 1 s时,分数频率不稳定性为7.6 / spl times / 10 / sup -15 /的振荡器(/ spl sim / 50 K)。

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