Beijing National Laboratory for Condensed Matter Physics, Institute of Physics, Chinese Academy of Sciences, China.
Phys Rev Lett. 2011 Aug 5;107(6):067004. doi: 10.1103/PhysRevLett.107.067004. Epub 2011 Aug 3.
Quantum phase diffusion in a small underdamped Nb/AlO(x)/Nb junction (∼0.4 μm(2)) is demonstrated in a wide temperature range of 25-140 mK where macroscopic quantum tunneling (MQT) is the dominant escape mechanism. We propose a two-step transition model to describe the switching process in which the escape rate out of the potential well and the transition rate from phase diffusion to the running state are considered. The transition rate extracted from the experimental switching current distribution follows the predicted Arrhenius law in the thermal regime but is greatly enhanced when MQT becomes dominant.
在 25-140mK 的宽温度范围内,演示了一个小欠阻尼的 Nb/AlO(x)/Nb 结(约 0.4μm(2))中的量子相位扩散,其中宏观量子隧穿(MQT)是主要的逃逸机制。我们提出了一个两步跃迁模型来描述开关过程,其中考虑了出势阱的逃逸率和从相位扩散到运行状态的跃迁率。从实验开关电流分布中提取的跃迁率在热区遵循预测的 Arrhenius 定律,但当 MQT 占主导地位时,跃迁率会大大增强。