A. A. Shanenko
Federal University of Pernambuco
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Featured researches published by A. A. Shanenko.
Physical Review B | 2012
Alexei Vagov; A. A. Shanenko; M. V. Milošević; Vollrath M. Axt; F. M. Peeters
Based on the Gor’kov formalism for a clean s-wave superconductor, we develop an extended version of the single-band Ginzburg-Landau (GL) theory by means of a systematic expansion in the deviation from the critical temperature Tc, i.e., τ = 1 − T/T c. We calculate different contributions to the order parameter and the magnetic field: the leading contributions (∝ τ 1/2 in the order parameter and ∝ τ in the magnetic field) are controlled by the standard GL theory, while the next-to-leading terms (∝ τ 3/2 in the gap and ∝ τ 2 in the magnetic field) constitute the extended GL (EGL) approach. We derive the free-energy functional for the extended formalism and the corresponding expression for the current density. To illustrate the usefulness of our formalism, we calculate, in a semianalytical form, the temperature-dependent correction to the GL parameter at which the surface energy becomes zero, and analytically, the temperature dependence of the thermodynamic critical field. We demonstrate that the EGL formalism is not just a mathematical extension to the theory: variations of both the gap and the thermodynamic critical field with temperature calculated within the EGL theory are found in very good agreement with the full BCS results down to low temperatures, which dramatically improves the applicability of the formalism compared to its standard predecessor.
Scientific Reports | 2015
Mikhail D. Croitoru; A. A. Shanenko; Alexei Vagov; M. V. Milošević; Vollrath M. Axt; F. M. Peeters
Conventional superconductivity is inevitably suppressed in ultra-small metallic grains for characteristic sizes smaller than the Anderson limit. Experiments have shown that above the Anderson limit the critical temperature may be either enhanced or reduced when decreasing the particle size, depending on the superconducting material. In addition, there is experimental evidence that whether an enhancement or a reduction is found depends on the strength of the electron-phonon interaction in the bulk. We reveal how the strength of the e-ph interaction interplays with the quantum-size effect and theoretically obtain the critical temperature of the superconducting nanograins in excellent agreement with experimental data. We demonstrate that strong e-ph scattering smears the peak structure in the electronic density-of-states of a metallic grain and enhances the electron mass, and thereby limits the highest Tc achievable by quantum confinement.
Physical Review B | 2013
N.V. Orlova; A. A. Shanenko; M.V. Milošević; F. M. Peeters; Alexei Vagov; Vollrath M. Axt
Physical Review B | 2012
Alexei Vagov; A. A. Shanenko; M. V. Milošević; Vollrath M. Axt; F. M. Peeters
Physical Review B | 2011
Mikhail D. Croitoru; A. A. Shanenko; F. M. Peeters; Vollrath M. Axt
Physical Review B | 2016
Alexei Vagov; A. A. Shanenko; M. V. Milošević; Vollrath M. Axt; V. M. Vinokur; J. Albino Aguiar; F. M. Peeters
Physical Review B | 2017
A. S. Mosquera Polo; R. M. da Silva; Alexei Vagov; A. A. Shanenko; C. E. Deluque Toro; J. Albino Aguiar
Journal of Superconductivity and Novel Magnetism | 2016
Mikhail D. Croitoru; A. A. Shanenko; Alexei Vagov; A. S. Vasenko; M. V. Milošević; Vollrath M. Axt; F. M. Peeters
Physica C-superconductivity and Its Applications | 2014
Mikhail D. Croitoru; Martin Zachmann; Alexei Vagov; Vollrath M. Axt; A. A. Shanenko; P. Kettmann; Thomas Papenkort; Tilmann Kuhn
arXiv: Superconductivity | 2018
L. Salasnich; A. A. Shanenko; Alexei Vagov; J. Albino Aguiar; A. Perali