Title
Influence of chemical disorder on the electronic level spacing distribution of the Ag 5083 nanoparticle: A tight-binding study
Date Issued
2013
Access level
restricted access
Resource Type
journal article
Abstract
In the present work we study, employing a tight-binding Hamiltonian, the influence of chemical disorder on the electronic level spacing distribution of a silver nanoparticle containing 5083 atoms (∼ 5.5 nm). This nanoparticle was obtained by molecular dynamics simulations with a tight-binding atomic potential. The results indicate that in the absence of disorder the level spacing distributions are similar to those expected for systems belonging to the Gaussian Orthogonal Ensemble. Whereas, after increasing the chemical disorder, the electronic level spacing distribution and the Σ2 statistics tend to the corresponding form for the Poisson Ensemble, i.e., the silver nanoparticle acquires an insulating character which is expected for strongly disordered systems. Hence, this kind of disorder produces the localization of the electronic states of the nanoparticle. © 2012 Elsevier B.V.
Start page
122
End page
125
Volume
412
Number
6
Language
English
Subjects
Scopus EID
2-s2.0-84873339179
Source
Physica B: Condensed Matter
ISSN of the container
0921-4526
Sponsor(s)
L.R. Medrano is grateful to CONCYTEC for the financial support for the development of this work through the Post-graduate Scholarship Program 2010 for Peruvian Universities.
Sources of information:
Directorio de Producción Científica