Daniel Domínguez
Los Alamos National Laboratory
71 Papers
212 Citations
Daniel Domínguez is an academic researcher from Los Alamos National Laboratory. The author has contributed to research in topics: Josephson effect & Vortex. The author has an hindex of 22, co-authored 70 publications. Previous affiliations of Daniel Domínguez include International Centre for Theoretical Physics.
Chat about Author
Papers
Phenomenological theory of the paramagnetic Meissner effect.
TL;DR: The paramagnetic Meissner effect in a network of Josephson junctions which include a random distribution of \ensuremath{\pi} junctions presents some glassy properties and the results are in good qualitative agreement with recent experiments in ceramic Bi compounds.
89
Dynamic Transition in Vortex Flow in Strongly Disordered Josephson Junction Arrays and Superconducting Thin Films
TL;DR: In this article, the dynamics of vortices in strongly disordered Josephson junction arrays and superconducting films driven by a current were studied, and a dynamic phase transition in vortex flow at a current was found.
66
Angular dependence of c-axis plasma frequency and critical current in Josephson-coupled superconductors at high fields.
TL;DR: A vortex structure is predicted for Josephson-coupled superconductors in strong magnetic fields oriented near {ital ab} plane that results in a sharp increase of the {ital c}-axis critical current and plasma frequency when the magnetic field deviates from {ital Ab} orientation.
63
Vortex structure and dynamics in kagomé and triangular pinning potentials
TL;DR: In this article, the dynamics of thermally driven superconducting vortices in two types of periodic pinning potentials: kagom\'e and triangular were studied.
54
Melting and transverse depinning of driven vortex lattices in the periodic pinning of Josephson junction arrays
TL;DR: In this paper, a phase diagram for the current driven JJA was obtained as a function of the driving current I and temperature T. The phase diagram showed that when the vortex lattice is driven by a current, the depinning transition at low T and the melting transition at higher T become separated even for a field for which they coincide in equilibrium.
49