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Gain, noise and intermodulation in a nonlinear superconducting resonator

机译:非线性超导谐振器中的增益,噪声和互调

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A superconducting microwave resonator is modified with several weak links to make it nonlinear and operated as a phase-insensitive microwave amplifier. Signal gain is demonstrated by intermodulation with a strong pump. The gain is sharply frequency dependent, and we demonstrate phase dependence by examining correlations between the signal and one idler which is a 3rd order intermodulation product of the pump and signal tones. A calibration procedure is described which is based on measurement of both thermal and quantum noise, revealing that the following HEMT amplifier adds noise at 15 times the quantum limit. When operated as a phase-insensitive amplifier the nonlinear resonator added noise at 2.5 times the quantum limit. Significant power is found at intermodulation products beyond 3rd order, which may be responsible for the inability to reach the quantum limit. PACS Codes: 74.78.-w, 42.65.Yj, 85.25.Cp.
机译:对超导微波谐振器进行了改进,使其具有多个弱连接,使其变得非线性,并可用作对相位不敏感的微波放大器。信号增益通过与强泵的互调来证明。增益与频率密切相关,我们通过检查信号与一个惰轮之间的相关性证明了相位依赖性,该惰轮是泵浦和信号音的三阶互调产物。描述了一种基于热噪声和量子噪声测量的校准程序,揭示了随后的HEMT放大器在量子极限的15倍时会增加噪声。当作为对相位不敏感的放大器工作时,非线性谐振器会以量子极限的2.5倍添加噪声。在超过三阶的互调产物中发现了很大的功率,这可能是无法达到量子极限的原因。 PACS代码:74.78.-w,42.65.Yj,85.25.Cp。

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