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Featured researches published by V. Garbuio.


EPL | 2012

Strong excitons in novel two-dimensional crystals: Silicane and germanane

O. Pulci; Paola Gori; Margherita Marsili; V. Garbuio; R. Del Sole; F. Bechstedt

We show by first-principles calculations that, due to depressed screening and enhanced two-dimensional confinement, excitonic resonances with giant oscillator strength appear in hydrogenated Si and Ge layers, which qualitatively and quantitatively differ from those of graphane. Their large exciton binding energies and oscillator strengths make them promising for observation of novel physical effects and application in optoelectronic devices on the nanoscale.


Journal of Physics: Condensed Matter | 2009

Excited state properties of liquid water.

V. Garbuio; Michele Cascella; Olivia Pulci

In this paper, we give an overview of the state of the art in calculations of the electronic band structure and absorption spectra of water. After an introduction to the main theoretical and computational schemes used, we present results for the electronic and optical excitations of water. We focus mainly on liquid water, but spectroscopic properties of ice and vapor phase are also described. The applicability and the accuracy of first-principles methods are discussed, and results are critically presented.


Journal of Chemical Physics | 2012

Excited state properties of formamide in water solution: An ab initio study

V. Garbuio; Michele Cascella; R. Del Sole; Margherita Marsili; O. Pulci

We present ab initio quantum calculation of the optical properties of formamide in vapor phase and in water solution. We employ time dependent density functional theory for the isolated molecule and many-body perturbation theory methods for the system in solution. An average over several molecular dynamics snapshots is performed to take into account the disorder of the liquid. We find that the excited state properties of the gas-phase formamide are strongly modified by the presence of the water solvent: the geometry of the molecule is distorted and the electronic and optical properties are severely modified. The important interaction among the formamide and the water molecules forces us to use fully quantum methods for the calculation of the excited state properties of this system. The excitonic wave function is localized both on the solute and on part of the solvent.


Journal of Chemical Physics | 2015

Proton disorder in cubic ice: Effect on the electronic and optical properties

V. Garbuio; Michele Cascella; Igor Kupchak; Olivia Pulci; Ari Paavo Seitsonen

The proton disorder in ice has a key role in several properties such as the growth mode, thermodynamical properties, and ferroelectricity. While structural phase transitions from proton disordered to proton ordered ices have been extensively studied, much less is known about their electronic and optical properties. Here, we present ab initio many body perturbation theory-based calculations of the electronic and optical properties of cubic ice at different levels of proton disorder. We compare our results with those from liquid water, that acts as an example of a fully (proton- and oxygen-)disordered system. We find that by increasing the proton disorder, a shrinking of the electronic gap occurs in ice, and it is smallest in the liquid water. Simultaneously, the excitonic binding energy decreases, so that the final optical gaps result to be almost independent on the degree of proton disorder. We explain these findings as an interplay between the local dipolar disorder and the electronic correlation.


Physical Review Letters | 2006

Ab initio calculation of optical spectra of liquids: many-body effects in the electronic excitations of water.

V. Garbuio; Michele Cascella; Lucia Reining; R. Del Sole; O. Pulci


Physica Status Solidi A-applications and Materials Science | 2010

Electronic and optical properties of group IV two-dimensional materials

Olivia Pulci; Paola Gori; M. Marsili; V. Garbuio; A. P. Seitsonen; F. Bechstedt; A. Cricenti; R. Del Sole


Physica Status Solidi B-basic Solid State Physics | 2015

Excitons in two‐dimensional sheets with honeycomb symmetry

O. Pulci; M. Marsili; V. Garbuio; Paola Gori; I. Kupchak; F. Bechstedt


Physica Status Solidi B-basic Solid State Physics | 2005

Electronic excitations in solids: Density functional and Green's function theory

Olivia Pulci; M. Marsili; E. Luppi; Conor Hogan; V. Garbuio; Francesco Sottile; Rita Magri; R. Del Sole


Proceedings of the Workshop | 2009

OPTICAL AND ELECTRON ENERGY LOSS SPECTRA OF LIQUID WATER: AN AB-INITIO STUDY

Olivia Pulci; V. Garbuio; Rodolfo Del Sole


Proceedings of the 39th Course of the International School of Solid State Physics | 2008

EXCITED STATE PROPERTIES CALCULATIONS: FROM 0 TO 3 DIMENSIONAL SYSTEMS

Margherita Marsili; V. Garbuio; M. Bruno; O. Pulci; Maurizia Palummo; Elena Degoli; Eleonora Luppi; R. Del Sole

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R. Del Sole

University of Rome Tor Vergata

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Olivia Pulci

University of Rome Tor Vergata

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O. Pulci

École Polytechnique

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M. Marsili

University of Rome Tor Vergata

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Maurizia Palummo

University of Rome Tor Vergata

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Rodolfo Del Sole

University of Rome Tor Vergata

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Conor Hogan

University of Rome Tor Vergata

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