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Noise in a superconducting single-electron transistor resonator driven by an external field

机译:由外场驱动的超导单电子晶体管谐振器中的噪声

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We investigate the noise properties of a superconducting single-electron transistor (SSKT) coupled to a harmonically driven resonator. Using a Langevin equation approach, we calculate the frequency spectrum of the SSET charge and calculate its effect on the resonator field. We find that the heights of the peaks in the frequency spectra depend sensitively on the amplitude of the resonator oscillation and hence suggest that the heights of these peaks could act as a sensitive signal for detecting the small changes in the amplitude of the drive. The previously known results for the effective amplitude-dependent damping and temperature provided by the SSET for the case of a low-frequency resonator are generalized for all resonator frequencies.
机译:我们研究耦合到谐波驱动谐振器的超导单电子晶体管(SSKT)的噪声特性。使用Langevin方程方法,我们计算SSET电荷的频谱并计算其对谐振器场的影响。我们发现频谱中峰值的高度敏感地取决于谐振器振荡的幅度,因此建议这些峰值的高度可以用作检测驱动器幅度微小变化的敏感信号。 SSET针对低频谐振器提供的有效幅度相关阻尼和温度的先前已知结果适用于所有谐振器频率。

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