Femtosecond-resolved ablation dynamics of Si in the near field of a small dielectric particle
In this work we analyze the ablation dynamics of crystalline Si in the intense near field generated by a small dielectric particle located at the material surface when being irradiated with an infrared femtosecond laser pulse (800 nm, 120 fs). The presence of the particle (7.9 μm diameter) leads to...
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doaj-d9c349e5256747748b6d121be8f443432020-11-24T23:54:00ZengBeilstein-InstitutBeilstein Journal of Nanotechnology2190-42862013-09-014150150910.3762/bjnano.4.592190-4286-4-59Femtosecond-resolved ablation dynamics of Si in the near field of a small dielectric particlePaul Kühler0Daniel Puerto1Mario Mosbacher2Paul Leiderer3Francisco Javier Garcia de Abajo4Jan Siegel5Javier Solis6Laser Processing Group (LPG), Instituto de Optica, CSIC, Serrano 121, 28006 Madrid, SpainLaser Processing Group (LPG), Instituto de Optica, CSIC, Serrano 121, 28006 Madrid, SpainFaculty of Physics, Universität Konstanz, Universitätsstraße 10, 78457 Konstanz, GermanyFaculty of Physics, Universität Konstanz, Universitätsstraße 10, 78457 Konstanz, GermanyInstituto de Química Física “Rocasolano”, CSIC, Serrano 119, 28006 Madrid, SpainLaser Processing Group (LPG), Instituto de Optica, CSIC, Serrano 121, 28006 Madrid, SpainLaser Processing Group (LPG), Instituto de Optica, CSIC, Serrano 121, 28006 Madrid, SpainIn this work we analyze the ablation dynamics of crystalline Si in the intense near field generated by a small dielectric particle located at the material surface when being irradiated with an infrared femtosecond laser pulse (800 nm, 120 fs). The presence of the particle (7.9 μm diameter) leads to a strong local enhancement (ca. 40 times) of the incoming intensity of the pulse. The transient optical response of the material has been analyzed by means of fs-resolved optical microscopy in reflection configuration over a time span from 0.1 ps to about 1 ns. Characteristic phenomena like electron plasma formation, ultrafast melting and ablation, along with their characteristic time scales are observed in the region surrounding the particle. The use of a time resolved imaging technique allows us recording simultaneously the material response at ordinary and large peak power densities enabling a direct comparison between both scenarios. The time resolved images of near field exposed regions are consistent with a remarkable temporal shift of the ablation onset which occurs in the sub-picosend regime, from about 500 to 800 fs after excitation.https://doi.org/10.3762/bjnano.4.59crystalline Sifs-resolved microscopylaser ablationnear-field enhancementultrafast dynamics |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Paul Kühler Daniel Puerto Mario Mosbacher Paul Leiderer Francisco Javier Garcia de Abajo Jan Siegel Javier Solis |
spellingShingle |
Paul Kühler Daniel Puerto Mario Mosbacher Paul Leiderer Francisco Javier Garcia de Abajo Jan Siegel Javier Solis Femtosecond-resolved ablation dynamics of Si in the near field of a small dielectric particle Beilstein Journal of Nanotechnology crystalline Si fs-resolved microscopy laser ablation near-field enhancement ultrafast dynamics |
author_facet |
Paul Kühler Daniel Puerto Mario Mosbacher Paul Leiderer Francisco Javier Garcia de Abajo Jan Siegel Javier Solis |
author_sort |
Paul Kühler |
title |
Femtosecond-resolved ablation dynamics of Si in the near field of a small dielectric particle |
title_short |
Femtosecond-resolved ablation dynamics of Si in the near field of a small dielectric particle |
title_full |
Femtosecond-resolved ablation dynamics of Si in the near field of a small dielectric particle |
title_fullStr |
Femtosecond-resolved ablation dynamics of Si in the near field of a small dielectric particle |
title_full_unstemmed |
Femtosecond-resolved ablation dynamics of Si in the near field of a small dielectric particle |
title_sort |
femtosecond-resolved ablation dynamics of si in the near field of a small dielectric particle |
publisher |
Beilstein-Institut |
series |
Beilstein Journal of Nanotechnology |
issn |
2190-4286 |
publishDate |
2013-09-01 |
description |
In this work we analyze the ablation dynamics of crystalline Si in the intense near field generated by a small dielectric particle located at the material surface when being irradiated with an infrared femtosecond laser pulse (800 nm, 120 fs). The presence of the particle (7.9 μm diameter) leads to a strong local enhancement (ca. 40 times) of the incoming intensity of the pulse. The transient optical response of the material has been analyzed by means of fs-resolved optical microscopy in reflection configuration over a time span from 0.1 ps to about 1 ns. Characteristic phenomena like electron plasma formation, ultrafast melting and ablation, along with their characteristic time scales are observed in the region surrounding the particle. The use of a time resolved imaging technique allows us recording simultaneously the material response at ordinary and large peak power densities enabling a direct comparison between both scenarios. The time resolved images of near field exposed regions are consistent with a remarkable temporal shift of the ablation onset which occurs in the sub-picosend regime, from about 500 to 800 fs after excitation. |
topic |
crystalline Si fs-resolved microscopy laser ablation near-field enhancement ultrafast dynamics |
url |
https://doi.org/10.3762/bjnano.4.59 |
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