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Low-noise microwave oscillators based on high-Q sapphire dielectric resonators

机译:基于高Q蓝宝石介质谐振器的低噪声微波振荡器

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Two almost identical 9 GHz oscillators were constructed, each characterised by approximately 500 mW of microwave power dissipated in the sapphire loaded cavity (SLC) resonator. The phase locking of the 'slave' oscillator to 'master' required for the phase noise measurements, was accomplished by altering the level of microwave power dissipated in the SLC resonator of the 'slave' resonator. The spectral density of phase fluctuations of both oscillators was measured with a dual-channel readout system calculating the cross-spectral density of voltage fluctuations between the channels in order to minimise the effect of uncorrelated fluctuations of the each channel on the resolution of spectral measurements.
机译:构造了两个几乎相同的9 GHz振荡器,每个特征在于在蓝宝石负载腔(SLC)谐振器中耗散大约500mW的微波功率。通过改变“从属”谐振器的SLC谐振器中消散的微波功率水平来实现“从”振荡器对“轴振荡器”的“掌握”所需的阶段锁定。用双通道读出系统测量两个振荡器的相位波动的光谱密度,该双通道读出系统计算通道之间的电压波动的交叉频率密度,以便最小化每个信道对光谱测量分辨率的不相关波动的影响。

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