Electron emission from insulator surfaces by ultra-short laser pulses
Photoelectron emission from insulator surfaces induced by ultra-short laser pulses is studied within a time-dependent distorted wave method. The proposed approach combines the Volkov phase, which takes into account the laser interaction, with a simple representation of the unperturbed surface states...
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Acceso en línea: | http://hdl.handle.net/20.500.12110/paper_17426588_v194_n13_p_Acuna |
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todo:paper_17426588_v194_n13_p_Acuna2023-10-03T16:30:32Z Electron emission from insulator surfaces by ultra-short laser pulses Acuña, M. Gravielle, M.S. Tanis J.A. Orel A. Kamber E.Y. Nikolic D. Starace A.F. Berrah N. Gorczyca T.W. Condensed matter physics Insulating materials Laser pulses Lithium compounds Photoelectrons Photons Distorted wave methods Insulator surfaces Laser interaction Photo-electron emission Short laser pulse Tight binding methods Time dependent Electron emission Photoelectron emission from insulator surfaces induced by ultra-short laser pulses is studied within a time-dependent distorted wave method. The proposed approach combines the Volkov phase, which takes into account the laser interaction, with a simple representation of the unperturbed surface states, given by the Tight-binding method. The model is applied to evaluate the photoelectron emission from a LiF(001) surface, finding effects of interference produced by the crystal lattice. © 2009 IOP Publishing Ltd. CONF info:eu-repo/semantics/openAccess http://creativecommons.org/licenses/by/2.5/ar http://hdl.handle.net/20.500.12110/paper_17426588_v194_n13_p_Acuna |
institution |
Universidad de Buenos Aires |
institution_str |
I-28 |
repository_str |
R-134 |
collection |
Biblioteca Digital - Facultad de Ciencias Exactas y Naturales (UBA) |
topic |
Condensed matter physics Insulating materials Laser pulses Lithium compounds Photoelectrons Photons Distorted wave methods Insulator surfaces Laser interaction Photo-electron emission Short laser pulse Tight binding methods Time dependent Electron emission |
spellingShingle |
Condensed matter physics Insulating materials Laser pulses Lithium compounds Photoelectrons Photons Distorted wave methods Insulator surfaces Laser interaction Photo-electron emission Short laser pulse Tight binding methods Time dependent Electron emission Acuña, M. Gravielle, M.S. Tanis J.A. Orel A. Kamber E.Y. Nikolic D. Starace A.F. Berrah N. Gorczyca T.W. Electron emission from insulator surfaces by ultra-short laser pulses |
topic_facet |
Condensed matter physics Insulating materials Laser pulses Lithium compounds Photoelectrons Photons Distorted wave methods Insulator surfaces Laser interaction Photo-electron emission Short laser pulse Tight binding methods Time dependent Electron emission |
description |
Photoelectron emission from insulator surfaces induced by ultra-short laser pulses is studied within a time-dependent distorted wave method. The proposed approach combines the Volkov phase, which takes into account the laser interaction, with a simple representation of the unperturbed surface states, given by the Tight-binding method. The model is applied to evaluate the photoelectron emission from a LiF(001) surface, finding effects of interference produced by the crystal lattice. © 2009 IOP Publishing Ltd. |
format |
CONF |
author |
Acuña, M. Gravielle, M.S. Tanis J.A. Orel A. Kamber E.Y. Nikolic D. Starace A.F. Berrah N. Gorczyca T.W. |
author_facet |
Acuña, M. Gravielle, M.S. Tanis J.A. Orel A. Kamber E.Y. Nikolic D. Starace A.F. Berrah N. Gorczyca T.W. |
author_sort |
Acuña, M. |
title |
Electron emission from insulator surfaces by ultra-short laser pulses |
title_short |
Electron emission from insulator surfaces by ultra-short laser pulses |
title_full |
Electron emission from insulator surfaces by ultra-short laser pulses |
title_fullStr |
Electron emission from insulator surfaces by ultra-short laser pulses |
title_full_unstemmed |
Electron emission from insulator surfaces by ultra-short laser pulses |
title_sort |
electron emission from insulator surfaces by ultra-short laser pulses |
url |
http://hdl.handle.net/20.500.12110/paper_17426588_v194_n13_p_Acuna |
work_keys_str_mv |
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1807321881386156032 |