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Quantum noise in current biased Josephson junction

机译:电流偏置的约瑟夫逊结中的量子噪声

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摘要

We consider quantum fluctuations in a current biased overdamped Josephson junction in the regime when the bias current is larger than the critical current. The fluctuations of the voltage and phase across the junction are assumed to be initiated by equilibrium current fluctuations in the shunting resistor. This corresponds to low enough temperatures, when fluctuations of the normal current in the junction itself can be neglected. Quantum effects are important when the resistor temperature is low compared to the Josephson frequency, even in the case when noise is measured at frequencies lower than the temperature. We used the quantum Langevin equation in terms of random variables related to the limit cycle of the nonlinear Josephson oscillator. This allows to go beyond the perturbation theory and calculate the widths of the Josephson radiation lines.
机译:当偏置电流大于临界电流时,我们考虑该状态下电流偏置的超阻尼约瑟夫逊结中的量子涨落。假设跨接点的电压和相位波动是由并联电阻中的平衡电流波动引起的。当可以忽略结本身中正常电流的波动时,这对应于足够低的温度。当电阻器温度低于约瑟夫森频率时,即使在低于温度的频率下测量噪声的情况下,量子效应也很重要。我们根据与非线性约瑟夫森振荡器的极限环有关的随机变量来使用量子兰格文方程。这可以超越微扰理论并计算约瑟夫森辐射线的宽度。

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