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Assessment Study of Small Space Debris Removal by Laser Satellites Sang H. Choi and Richard S. Pappa NASA Langley Research Center Hampton, VA[removed]Abstract
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Document Date: 2013-04-10 17:04:10


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File Size: 573,49 KB

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City

Boston / Vienna / /

Company

Cambridge University Press / Lilly / Ge / /

Event

Patent Issuance / /

Facility

NASA Earth Observatory / NASA Langley Research Center / Module Power Station of Directly Solar Pumped Iodine Laser / /

IndustryTerm

plasma devices / materials technology / reduced energy consumption using laser ablation results / beam power transmission technology / photon energy / wireless power transmission technology / paint flakes / pulse energy / on-orbit satellite fragmentations / optics technologies / laser beam energy / news media captures / energy / wireless power transmission / power satellite / metal foil / laser energy requirements / protective thin-metal film work / kinetic energy / higher pulse energy / less energy / km/s using laser pulse energy / solar energy / laser satellite / lower laser pulse energy / space applications / surface degradation products / Laser pulse energy / laser energy / /

MusicGroup

Express / Power / /

Organization

Cambridge University / National Science Foundation / United Nations / National Aeronautics and Space Administration / United Nations Committee on the Peaceful Uses of Outer Space / NASA Orbital Debris Program Office / /

Person

B. K. Deka / W. E. Meador / Richard S. Pappa / J. L. Foster / Jr. / S. H. Choi / M. D. Williams / J. H. Lee / E. J. Conway / Sang H. Choi / /

Position

http /

ProvinceOrState

Virginia / Massachusetts / /

PublishedMedium

Journal of Physics /

Technology

materials technology / microwave / ESA / steering optics technologies / laser system / related technologies / Laser / lasers / condensation / beam power transmission technology / wireless power transmission technology / recombination / /

URL

http /

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