Vora Heli, Kautz R L, Nam S W, Aumentado J
National Institute of Standards and Technology, Boulder, Colorado, 80305, USA.
Phys Rev B. 2017 Aug;96(5). doi: 10.1103/PhysRevB.96.054505. Epub 2017 Aug 7.
Bloch oscillations in nanoscale Josephson junctions with a Coulomb charging energy comparable to the Josephson coupling energy are explored within the context of a model previously considered by Geigenmüller and Schön that includes Zener tunneling and treats quasiparticle tunneling as an explicit shot-noise process. The dynamics of the junction quasicharge are investigated numerically using both Monte Carlo and ensemble approaches to calculate voltage-current characteristics in the presence of microwaves. We examine in detail the origin of harmonic and subharmonic Bloch steps at dc biases = ()2 induced by microwaves of frequency and consider the optimum parameters for the observation of harmonic ( = 1) steps. We also demonstrate that the GS model allows a detailed semiquantitative fit to experimental voltage-current characteristics previously obtained at the Chalmers University of Technology, confirming and strengthening the interpretation of the observed microwave-induced steps in terms of Bloch oscillations.
在一个先前由盖根米勒和舍恩所考虑的模型框架内,研究了库仑充电能量与约瑟夫森耦合能量相当的纳米级约瑟夫森结中的布洛赫振荡。该模型包括齐纳隧穿,并将准粒子隧穿视为一个明确的散粒噪声过程。使用蒙特卡罗方法和系综方法对结准电荷的动力学进行了数值研究,以计算在存在微波的情况下的电压 - 电流特性。我们详细研究了由频率为 的微波在直流偏置 = ()2 时诱导的谐波和次谐波布洛赫台阶的起源,并考虑了观察谐波( = 1)台阶的最佳参数。我们还证明,GS 模型能够对先前在查尔姆斯理工大学获得的实验电压 - 电流特性进行详细的半定量拟合,从而证实并强化了根据布洛赫振荡对观察到的微波诱导台阶的解释。