We report an ab initio investigation of fast electron energy-loss probability in silicon and germanium nanowires. Computed energy loss spectra are characterized by a strong enhancement of the direct interband transition peak at low energy, in good agreement with experimental data. Our calculations predict an important diameter dependence of the bulk volume plasmon peak for very thin wires which is consistent with the blue shift observed experimentally in thicker wires.

Ab initio energy loss spectra of Si and Ge nanowires / Palummo, Maurizia; Hogan, Conor; Ossicini, Stefano. - In: PHYSICAL CHEMISTRY CHEMICAL PHYSICS. - ISSN 1463-9076. - STAMPA. - 17:43(2015), pp. 29085-29089. [10.1039/c5cp05074j]

Ab initio energy loss spectra of Si and Ge nanowires

OSSICINI, Stefano
2015

Abstract

We report an ab initio investigation of fast electron energy-loss probability in silicon and germanium nanowires. Computed energy loss spectra are characterized by a strong enhancement of the direct interband transition peak at low energy, in good agreement with experimental data. Our calculations predict an important diameter dependence of the bulk volume plasmon peak for very thin wires which is consistent with the blue shift observed experimentally in thicker wires.
2015
17
43
29085
29089
Ab initio energy loss spectra of Si and Ge nanowires / Palummo, Maurizia; Hogan, Conor; Ossicini, Stefano. - In: PHYSICAL CHEMISTRY CHEMICAL PHYSICS. - ISSN 1463-9076. - STAMPA. - 17:43(2015), pp. 29085-29089. [10.1039/c5cp05074j]
Palummo, Maurizia; Hogan, Conor; Ossicini, Stefano
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11380/1074534
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