An array of resistively and capacitively shunted Josephson junctions with nonsinusoidal currentphase relation is considered for modelling the resistive transition in high-Tc superconductors. The emergence of higher harmonics, besides the sinusoid Ic sin φ, is expected for dominant d-wave symmetry of the Cooper pairs, random distribution of potential drops and dirty grains, or in nonstationary conditions. We show that additional cosine term acts by modulating the global resistance, due to the weak-links whose transition occurs through mixed superconductive-normal states
The traditional distinction between tunnel and highly transmissive barriers does not currently hold ...
The impressive advances in material science and nanotechnology are more and more promoting the use o...
Josephson effect in junctions between unconventional superconductors is studied theoretically within...
Abstract—An array of resistively and capacitively shunted Josephson junctions with nonsinusoidal cur...
An array of resistively and capacitively shunted Josephson junctions with nonsinusoidal current-phas...
We study theoretically the Josephson effect in junctions based on unconventional superconductors wit...
Nonlinearities caused by vortex pinning and weak links in superconductors are considered. The effect...
Some analytical results for the resistively shunted Josephson junction, fed with an ac current in ad...
In this paper a simple mathematical model is presented for the inherent resistive nonlinearity of a ...
The formation of layers during the resistive transition of granular high-Tc superconductors, charact...
We investigate theoretically the dynamics of a Josephson junction in the framework of the resistivel...
Results on analytical and computational investigations of high-frequency dynamics of Josephson junct...
We consider a resistively shunted Josephson junction with a resistance that depends inversely on vol...
The electrophysical and dynamic parameters (Shapiro steps and detector response) of hybrid heterostr...
We study theoretically the Josephson effect in d-wave superconductor/diffusive normal metal/insulato...
The traditional distinction between tunnel and highly transmissive barriers does not currently hold ...
The impressive advances in material science and nanotechnology are more and more promoting the use o...
Josephson effect in junctions between unconventional superconductors is studied theoretically within...
Abstract—An array of resistively and capacitively shunted Josephson junctions with nonsinusoidal cur...
An array of resistively and capacitively shunted Josephson junctions with nonsinusoidal current-phas...
We study theoretically the Josephson effect in junctions based on unconventional superconductors wit...
Nonlinearities caused by vortex pinning and weak links in superconductors are considered. The effect...
Some analytical results for the resistively shunted Josephson junction, fed with an ac current in ad...
In this paper a simple mathematical model is presented for the inherent resistive nonlinearity of a ...
The formation of layers during the resistive transition of granular high-Tc superconductors, charact...
We investigate theoretically the dynamics of a Josephson junction in the framework of the resistivel...
Results on analytical and computational investigations of high-frequency dynamics of Josephson junct...
We consider a resistively shunted Josephson junction with a resistance that depends inversely on vol...
The electrophysical and dynamic parameters (Shapiro steps and detector response) of hybrid heterostr...
We study theoretically the Josephson effect in d-wave superconductor/diffusive normal metal/insulato...
The traditional distinction between tunnel and highly transmissive barriers does not currently hold ...
The impressive advances in material science and nanotechnology are more and more promoting the use o...
Josephson effect in junctions between unconventional superconductors is studied theoretically within...