MiTMoJCo: Microscopic Tunneling Model for Josephson Contacts
arXiv:1809.04706 · doi:10.1016/j.cpc.2019.107091
Abstract
MiTMoJCo (Microscopic Tunneling Model for Josephson Contacts) is C code which aims to assist modeling of superconducting Josephson contacts based on the microscopic tunneling theory. The code offers implementation of a computationally demanding part of this calculation, that is evaluation of superconducting pair and quasiparticle tunnel currents from the given tunnel current amplitudes (TCAs) which characterize the junction material. MiTMoJCo comes with a library of pre-calculated TCAs for frequently used Nb-AlOx-Nb and Nb-AlN-NbN junctions, a Python module for developing custom TCAs, supplementary optimum filtration module for extraction of a constant component of a sinusoidal signal and examples of modeling few common cases of superconducting Josephson contacts.
7 pages, 1 figure, 1 table
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- Bridging the Terahertz gap for chaotic sources with superconducting junctions
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Cited by in corpus (4)
- Bridging the Terahertz gap for chaotic sources with superconducting junctions
- Microscopic tunneling model of Nb-AlN-NbN Josephson flux-flow oscillator
- Gap resonance in the classical dynamics of the current-biased Josephson tunnel junctions
- Intrinsic space-time crystalline order in a hybrid Josephson junction