November 2009

Journal

Quasiparticle Gaps and Exciton Coulomb Energies in Si Nanoshells

By:
Frey, K.; Idrobo Tapia, Juan C; Tiago, Murilo L; Reboredo, Fernando A; Ogut, Serdar
Journal Name:
Physical Review B
Page Number:
153411
Volume:
80
Issue Number:
15
Publication Date:
November 5, 2009
View DOI Listing:
https://doi.org/10.1103/PhysRevB.80.153411

Abstract

Quasiparticle gaps and exciton Coulomb energies of H-passivated spherical Si nanoshells are computed using rst principles SCF and GW methods. We nd that the quasiparticle gap of a nanoshell depends on both its inner radius R1 (weakly) and outer radius R2 (strongly). These dependences on R1 and R2 are mostly consistent with electrostatics of a metallic shell. We also nd that the unscreened Coulomb energy ECoul in Si nanoshells has a somewhat unexpected size dependence at xed outer radius R2: ECoul decreases as the nanoshell becomes more conning, contrary to what one would expect from quantum connement eects. We show that this is a consequence of an increase in the average electron-hole distance, giving rise to reduced exciton Coulomb energies in spite of the reduction in the conning nanoshell volume.


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