Transfers from Earth to LEO and LEO to interplanetary space using lasers
Article dans une revue avec comité de lecture
Auteur
BOUSTIE, Michel
118112 Institut Pprime [UPR 3346] [PPrime [Poitiers]]
400034 Département Fluides, Thermique et Combustion [Institut Pprime] [Département FTC]
118112 Institut Pprime [UPR 3346] [PPrime [Poitiers]]
400034 Département Fluides, Thermique et Combustion [Institut Pprime] [Département FTC]
CHEVALIER, Jean Marc
21150 Centre d'études scientifiques et techniques d'Aquitaine (CESTA-CEA) [CESTA]
21150 Centre d'études scientifiques et techniques d'Aquitaine (CESTA-CEA) [CESTA]
Date
2018Journal
Acta AstronauticaRésumé
New data on some materials at 80ps pulse duration and 1057 nm wavelength give us the option of proportionally combining them to obtain arbitrary values between 35 (aluminum) and 800 N/MW (POM, polyoxymethylene) for momentum coupling coefficient Cm. Laser ablation physics lets us transfer to LEO from Earth, or to interplanetary space using repetitively pulsed lasers and Cm values appropriate for each mission. We discuss practical results for lifting small payloads from Earth to LEO, and space missions such as a cis-Mars orbit with associated laser system parameters.
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Article dans une revue avec comité de lecturePHIPPS, Claude R.; BOUSTIE, Michel; CHEVALIER, Jean Marc; BATON, Sophie D.; BRAMBRINK, Erik; BERTHE, Laurent; SCHNEIDER, Matthieu; VIDEAU, Laurent; BOYER, Séverine A.E.; SCHARRING, Stefan (American Institute of Physics, 2017)At the École Polytechnique « LULI » facility, we have measured the impulse coupling coefficient Cm (target momentum per joule of incident laser light) with several target materials in vacuum, at 1057 nm and 400 fs and 80 ...
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Article dans une revue avec comité de lectureHÉBERT, David; SEISSON, Gabriel; RULLIER, Jean-Luc; BERTRON, Isabelle; HALLO, Ludovic; CHEVALIER, Jean Marc; THESSIEUX, C.; GUILLET, Francois; BOUSTIE, Michel; BERTHE, Laurent (Royal Society, The, 2017)We present experiments and numerical simulations of hypervelocity impacts of 0.5mm steel spheres into graphite, for velocities ranging between 1100 and 4500ms?1. Experiments have evidenced that, after a particular striking ...
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Article dans une revue avec comité de lectureSEISSON, G; HEBERT, David; BERTRON, I; CHEVALIER, J.M; HALLO, L; LESCOUTE, Emilien; VIDEAU, Laurent; COMBIS, Patrick; GUILLET, F; BOUSTIE, Michel; BERTHE, Laurent (Elsevier, 2013)The cratering process in brittle materials under hypervelocity impact (HVI) is of major relevance for debris shielding in spacecraft or high-power laser applications. Amongst other materials, carbon is of particular interest ...
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Article dans une revue avec comité de lectureHEBERT, David; BERTRON, I; CHEVALIER, J.M; HALLO, L; LESCOUTE, Emilien; VIDEAU, Laurent; COMBIS, Patrick; GUILLET, F; BERTHE, Laurent; SEISSON, G.; BOUSTIE, Michel (Elsevier, 2013)The cratering process in brittle materials under hypervelocity impact (HVI) is of major relevance for debris shielding in spacecraft or high-power laser applications. Amongst other materials, carbon is of particular interest ...
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Dynamic fragmentation of graphite under laser-driven shocks: Identification of four damage regimes Article dans une revue avec comité de lectureSEISSON, Gabriel; PRUDHOMME, Gabriel; FRUGIER, Pierre Antoine; HÉBERT, David; LESCOUTE, Emilien; SOLLIER, Arnaud; VIDEAU, Laurent; MERCIER, Patrick; BOUSTIE, Michel; BERTHE, Laurent (Elsevier, 2016)This study presents the results of a large experimental campaign conducted on the Luli2000 laser facility. Thin targets of a commercial grade of porous graphite were submitted to high-power laser-driven shocks leading to ...