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Dive into the research topics where G. Profeta is active.

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Featured researches published by G. Profeta.


Physical Review B | 2001

Electronic and structural properties of superconducting MgB2, CaSi2, and related compounds

G. Satta; G. Profeta; Fabio Bernardini; A. Continenza; S. Massidda

We report a detailed study of the electronic and structural properties of the 39K superconductor \mgbtwo and of several related systems of the same family, namely \mgalbtwo, \bebtwo, \casitwo and \cabesi. Our calculations, which include zone-center phonon frequencies and transport properties, are performed within the local density approximation to the density functional theory, using the full-potential linearized augmented plane wave (FLAPW) and the norm-conserving pseudopotential methods. Our results indicate essentially three-dimensional properties for these compounds; however, strongly two-dimensional


Physical Review B | 2005

Ab-initio theory of superconductivity - I: Density functional formalism and approximate functionals

M. Lüders; Miguel A. L. Marques; N. N. Lathiotakis; A. Floris; G. Profeta; L. Fast; A. Continenza; S. Massidda; E. K. U. Gross

\sigma


Physical Review B | 2005

Ab initio theory of superconductivity. II. Application to elemental metals

Miguel A. L. Marques; M. Lüders; N. N. Lathiotakis; G. Profeta; A. Floris; L. Fast; A. Continenza; E. K. U. Gross; S. Massidda

-bonding bands contribute significantly at the Fermi level. Similarities and differences between \mgbtwo and \bebtwo (whose superconducting properties have not been yet investigated) are analyzed in detail. Our calculations for \mgalbtwo show that metal substitution cannot be fully described in a rigid band model. \casitwo is studied as a function of pressure, and Be substitution in the Si planes leads to a stable compound similar in many aspects to diborides.


Physical Review Letters | 2005

Superconducting Properties ofMgB2from First Principles

A. Floris; G. Profeta; N. N. Lathiotakis; M. Lüders; Miguel A. L. Marques; C. Franchini; E. K. U. Gross; A. Continenza; S. Massidda

An approach to the description of superconductors in thermal equilibrium is developed within a formally exact density functional framework. The theory is formulated in terms of three “densities:” the ordinary electron density, the superconducting order parameter, and the diagonal of the nuclear N-body density matrix. The electron density and the order parameter are determined by Kohn-Sham equations that resemble the Bogoliubov–de Gennes equations. The nuclear density matrix follows from a Schrodinger equation with an effective N-body interaction. These equations are coupled to each other via exchange-correlation potentials which are universal functionals of the three densities. Approximations of these exchange-correlation functionals are derived using the diagrammatic techniques of many-body perturbation theory. The bare Coulomb repulsion between the electrons and the electron-phonon interaction enter this perturbative treatment on the same footing. In this way, a truly ab initio description is achieved which does not contain any empirical parameters.


Physical Review Letters | 2011

Intercalant and Intermolecular Phonon Assisted Superconductivity in K-Doped Picene

Michele Casula; Matteo Calandra; G. Profeta; Francesco Mauri

The density functional theory for superconductors developed in the preceding article is applied to the calculation of superconducting properties of several elemental metals. In particular, we present results for the transition temperature, for the gap at zero temperature, and for thermodynamic properties like the specific heat. We obtain an unprecedented agreement with experimental results. Superconductors with both strong and weak electron-phonon coupling are equally well described. This demonstrates that, as far as conventional superconductivity is concerned, the first-principles prediction of superconducting properties is feasible.


Physical Review B | 2010

Adiabatic and nonadiabatic phonon dispersion in a Wannier function approach

Matteo Calandra; G. Profeta; Francesco Mauri

Solid MgB(2) has rather interesting and technologically important properties, such as a very high superconducting transition temperature. Focusing on this compound, we report the first nontrivial application of a novel density-functional-type theory for superconductors, recently proposed by the authors. Without invoking any adjustable parameters, we obtain the transition temperature, the gaps, and the specific heat of MgB(2) in very good agreement with experiment. Moreover, our calculations show how the Coulomb interaction acts differently on sigma and pi states, thereby stabilizing the observed superconducting phase.


Physical Review Materials | 2017

Interplay between structure and superconductivity: Metastable phases of phosphorus under pressure

José A. Flores-Livas; Antonio Sanna; Alexander Drozdov; Lilia Boeri; G. Profeta; M. I. Eremets; Stefan Goedecker

K(3) picene is a superconducting molecular crystal with a critical temperature of T(c) = 7 or 18 K, depending on the preparation conditions. Using density functional theory we show that electron-phonon interaction accounts for T(c) 3-8 K. The average electron-phonon coupling, calculated by including the phonon energy scale in the electron-phonon scattering, is λ = 0.73 and ω(log) = 18.0 meV. Intercalant and intermolecular phonon modes contribute substantially (40%) to λ as also shown by the isotope exponents of potassium (0.19) and carbon (0.31). The relevance of these modes makes superconductivity in K-doped picene peculiar and different from that of fullerenes.


Physical Review B | 2013

Theoretical investigation of FeTe magnetic ordering under hydrostatic pressure

Marco Monni; Fabio Bernardini; G. Profeta; S. Massidda

We develop a first-principles scheme to calculate adiabatic and non-adiabatic phonon frequencies in the full Brillouin zone. The method relies on the variational properties of a force-constants functional with respect to the first-order perturbation of the electronic charge density and on the localization of the deformation potential in the Wannier function basis. This allows for calculation of phonon dispersion curves free from convergence issues related to Brillouin zone sampling. In addition our approach justify the use of the static screened potential in the calculation of the phonon linewidth due to decay in electron-hole pairs. We apply the method to the calculation of the phonon dispersion and electron-phonon coupling in MgB


Superconductor Science and Technology | 2009

The role of Coulomb interaction in the superconducting properties of CaC6 and H under pressure

S. Massidda; Fabio Bernardini; C. Bersier; A. Continenza; P. Cudazzo; A. Floris; H Glawe; Marco Monni; S. Pittalis; G. Profeta; A. Sanna; S. Sharma; E. K. U. Gross

_2


Physical Review B | 2009

Electronic, vibrational, and superconducting properties of CaBeSi : First-principles calculations

C. Bersier; A. Floris; A. Sanna; G. Profeta; A. Continenza; E. K. U. Gross; S. Massidda

and CaC

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S. Massidda

University of Cagliari

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A. Floris

King's College London

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A. Sanna

University of Cagliari

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S. Santucci

University of L'Aquila

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