We have developed a model for experiments in which the bias current applied to a Josephson junction is slowly increased from zero until the junction switches from its superconducting zero-voltage state and the bias value at which this occurs is recorded. Repetition of such measurements yields experimentally determined probability distributions for the bias current at the moment of escape. Our model provides an explanation for available data on the temperature dependence of these escape peaks. When applied microwaves are included, we observe an additional peak in the escape distributions and demonstrate that this peak matches experimental observations. The results suggest that experimentally observed switching distributions, with and w...
We propose to probe the distribution of current fluctuations by means of the escape probability hist...
We present an experimental study on the retrapping process of a hysteretic, high-quality Josephson j...
We have studied the temperature dependence of escape phenomena in various underdamped Josephson junc...
We have developed a model for experiments in which the bias current applied to a Josephson junction ...
Swept bias experiments carried out on Josephson junctions yield the distributions of the probabiliti...
This is the published version, also available here: http://dx.doi.org/10.1103/PhysRevB.77.104531.We ...
We discuss the combined effect of Gaussian and α -stable Lévy noise sources on the switching curre...
When probed with current pulses, Josephson junctions and superconducting wires exhibit stochastic sw...
We have identified anomalous behavior of the escape rate out of the zero-voltage state in Josephson ...
The evidence for macroscopic quantum tunneling (MQT) in Josephson junctions at low temperatures has ...
We investigate, by experiments and numerical simulations, thermal activation processes of Josephson ...
We investigate, by experiments and numerical simulations, thermal activation processes of Josephson ...
We propose to probe the distribution of current fluctuations by means of the escape probability hist...
We present an experimental study on the retrapping process of a hysteretic, high-quality Josephson j...
We have studied the temperature dependence of escape phenomena in various underdamped Josephson junc...
We have developed a model for experiments in which the bias current applied to a Josephson junction ...
Swept bias experiments carried out on Josephson junctions yield the distributions of the probabiliti...
This is the published version, also available here: http://dx.doi.org/10.1103/PhysRevB.77.104531.We ...
We discuss the combined effect of Gaussian and α -stable Lévy noise sources on the switching curre...
When probed with current pulses, Josephson junctions and superconducting wires exhibit stochastic sw...
We have identified anomalous behavior of the escape rate out of the zero-voltage state in Josephson ...
The evidence for macroscopic quantum tunneling (MQT) in Josephson junctions at low temperatures has ...
We investigate, by experiments and numerical simulations, thermal activation processes of Josephson ...
We investigate, by experiments and numerical simulations, thermal activation processes of Josephson ...
We propose to probe the distribution of current fluctuations by means of the escape probability hist...
We present an experimental study on the retrapping process of a hysteretic, high-quality Josephson j...
We have studied the temperature dependence of escape phenomena in various underdamped Josephson junc...