M
M. Wirzburger
Researcher at Johns Hopkins University Applied Physics Laboratory
Publications - 3
Citations - 1002
M. Wirzburger is an academic researcher from Johns Hopkins University Applied Physics Laboratory. The author has contributed to research in topics: CRISM & Mars Exploration Program. The author has an hindex of 2, co-authored 3 publications receiving 856 citations.
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Journal ArticleDOI
Compact Reconnaissance Imaging Spectrometer for Mars (CRISM) on Mars Reconnaissance Orbiter (MRO)
Scott L. Murchie,Raymond E. Arvidson,Peter D. Bedini,K. Beisser,Jean-Pierre Bibring,Janice L. Bishop,John D. Boldt,P. Cavender,T. Choo,R. T. Clancy,E. H. Darlington,David J. Des Marais,R. C. Espiritu,D. Fort,Robert O. Green,Edward A. Guinness,John Hayes,Christopher D. Hash,K. J. Heffernan,J. Hemmler,Gene A. Heyler,David C. Humm,J. Hutcheson,Noam R. Izenberg,R. Lee,J. Lees,D. A. Lohr,Erick Malaret,Terry Z. Martin,J. A. McGovern,Patrick C. McGuire,Richard V. Morris,John F. Mustard,Shannon M. Pelkey,Edgar A. Rhodes,Mark S. Robinson,Ted L. Roush,Edward D. Schaefer,G. Seagrave,Frank P. Seelos,P. Silverglate,S. Slavney,M. D. Smith,W. J. Shyong,K. Strohbehn,H. W. Taylor,P. Thompson,B. Tossman,M. Wirzburger,M. J. Wolff +49 more
TL;DR: The Compact Reconnaissance Imaging Spectrometer for Mars (CRISM) is a hyperspectral imager on the Mars Reconnaissance Orbiter (MRO) spacecraft as discussed by the authors, which consists of three subassemblies, a gimbaled Optical Sensor Unit (OSU), a Data Processing Unit (DPU), and the Gimbal Motor Electronics (GME).
Journal Article
Investigating Martian History with the CRISM Imaging Spectrometer
Scott L. Murchie,Kevin J. Heffernan,Peter D. Bedini,David C. Humm,Patrick L. Thompson,Jeffrey Lees,M. Wirzburger,Hugo Darlington,John D. Boldt,Kim Strohbehn,D. A. Lohr,John Hayes,Frank P. Seelos,T. Choo,J. A. McGovern +14 more
TL;DR: The Compact Reconnaissance Imaging Spectrometer for Mars (CRISM) as discussed by the authors is a mineral mapping camera mounted on the Mars Reconnaissance Orbiter (ROKS) that can map Mars' crustal composition and atmospheric processes, and to find and characterize past liquid water environments that might have provided a habitat for life.