Pekola J P, Nieminen T E, Meschke M, Kivioja J M, Niskanen A O, Vartiainen J J
Low Temperature Laboratory, Helsinki University of Technology, P.O. Box 3500, 02015 TKK, Finland.
Phys Rev Lett. 2005 Nov 4;95(19):197004. doi: 10.1103/PhysRevLett.95.197004. Epub 2005 Nov 3.
We have measured the influence of shot noise on hysteretic Josephson junctions initially in the macroscopic quantum tunneling regime. The escape threshold current into the resistive state decreases monotonically with increasing average current through the scattering conductor, which is another tunnel junction. Escape is predominantly determined by excitation due to the wideband shot noise. This process is equivalent to thermal activation (TA) over the barrier at effective temperatures up to about 4 times the critical temperature of the superconductor. The presented TA model is in excellent agreement with the experimental results.
我们首先在宏观量子隧穿 regime 中测量了散粒噪声对滞后约瑟夫森结的影响。进入电阻态的逃逸阈值电流随着通过散射导体(另一个隧道结)的平均电流增加而单调下降。逃逸主要由宽带散粒噪声引起的激发决定。这个过程等效于在有效温度高达超导体临界温度约4倍时越过势垒的热激活(TA)。所提出的TA模型与实验结果非常吻合。