Photochemistry of forbidden oxygen lines in the inner coma of 67P/Churyumov‐Gerasimenko
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T. Gombosi | S. Fuselier | R. Maggiolo | H. Gunell | M. Rubin | M. Combi | K. Altwegg | C. Briois | J. Keyser | G. Gronoff | J. Loreau | E. Neefs | B. Fiethe | L. L. Roy | A. Bieler | U. Calmonte | F. Dhooghe | M. Hässig | N. Vaeck | G. Cessateur | A. Gibbons | J. D. Keyser | T. Sémon
[1] F. Lefévre,et al. Retrieval of CO2 and N2 in the Martian thermosphere using dayglow observations by IUVS on MAVEN , 2015 .
[2] Martin Rubin,et al. Inventory of the volatiles on comet 67P/Churyumov-Gerasimenko from Rosetta/ROSINA , 2015 .
[3] J. De Keyser,et al. Abundant molecular oxygen in the coma of comet 67P/Churyumov–Gerasimenko , 2015, Nature.
[4] T. Owen,et al. Molecular nitrogen in comet 67P/Churyumov-Gerasimenko indicates a low formation temperature , 2015, Science.
[5] W. Huebner,et al. Photoionization and photodissociation rates in solar and blackbody radiation fields , 2015 .
[6] E. Neefs,et al. 67P/Churyumov-Gerasimenko, a Jupiter family comet with a high D/H ratio , 2015, Science.
[7] E. Kührt,et al. Time variability and heterogeneity in the coma of 67P/Churyumov-Gerasimenko , 2015, Science.
[8] Anita L. Cochran,et al. Evolution of H2O, CO, and CO2 production in Comet C/2009 P1 Garradd during the 2011-2012 apparition , 2014, 1412.7410.
[9] Véronique Dehant,et al. What characterizes planetary space weather? , 2014 .
[10] E. Jehin,et al. Forbidden oxygen lines at various nucleocentric distances in comets , 2014, 1409.6249.
[11] A. Rahmati,et al. The precipitation of keV energetic oxygen ions at Mars and their effects during the comet Siding Spring approach , 2014 .
[12] A. Bhardwaj,et al. Photochemistry of atomic oxygen green and red-doublet emissions in comets at larger heliocentric distances , 2014, 1405.0375.
[13] P. Drossart,et al. JUpiter ICy moons Explorer (JUICE): An ESA mission to orbit Ganymede and to characterise the Jupiter system , 2013 .
[14] Jeffrey Paul Morgenthaler,et al. Observations of the forbidden oxygen lines in DIXI target Comet 103P/Hartley , 2013 .
[15] A. Bhardwaj,et al. Model for atomic oxygen visible line emissions in Comet C/1995 O1 Hale-Bopp , 2012, 1211.5008.
[16] E. Jehin,et al. Forbidden oxygen lines in comets at various heliocentric distances , 2012, 1210.0842.
[17] N. Chanover,et al. Forbidden Oxygen Lines in Comets C/2006 W3 Christensen and C/2007 Q3 Siding Spring , 2012 .
[18] O. Witasse,et al. Computing uncertainties in ionosphere‐airglow models: II. The Martian airglow , 2012 .
[19] C. Mertens,et al. Computing uncertainties in ionosphere‐airglow models: I. Electron flux and species production uncertainties for Mars , 2012 .
[20] A. Bhardwaj,et al. A COUPLED CHEMISTRY-EMISSION MODEL FOR ATOMIC OXYGEN GREEN AND RED-DOUBLET EMISSIONS IN THE COMET C/1996 B2 HYAKUTAKE , 2012, 1203.0723.
[21] B. Sharpee,et al. Chemical origins of the Mars ultraviolet dayglow. , 2010, Faraday discussions.
[22] Anthony J. Mannucci,et al. XUV Photometer System (XPS): Improved Solar Irradiance Algorithm Using CHIANTI Spectral Models , 2008 .
[23] A. Cochran. Atomic oxygen in the comae of comets , 2007, 0807.0652.
[24] W. Harris,et al. Large Aperture O I 6300 Å Observations of Comet Hyakutake: Implications for the Photochemistry of OH and O I Production in Comet Hale-Bopp , 2007 .
[25] L. Duvet,et al. Rosina – Rosetta Orbiter Spectrometer for Ion and Neutral Analysis , 2007 .
[26] D. Siskind,et al. O(1S → 1D,3P) branching ratio as measured in the terrestrial nightglow , 2006 .
[27] W. McClintock,et al. Solar-Stellar Irradiance Comparison Experiment II (SOLSTICE II): Pre-Launch and On-Orbit Calibrations , 2005 .
[28] Gary J. Rottman,et al. The SORCE Mission , 2005 .
[29] D. L. Baulch,et al. Evaluated kinetic and photochemical data for atmospheric chemistry: Volume I - gas phase reaxtions of Ox, HOx, NOx and SOx species , 2004 .
[30] C. Fischer,et al. Breit–Pauli energy levels, lifetimes, and transition probabilities for the beryllium-like to neon-like sequences☆ , 2004 .
[31] Hans Balsiger,et al. Interpretation of the ion mass spectra in the mass per charge range 25-35 amu/e obtained in the inner coma of Halley's comet by the HIS-sensor of the Giotto IMS experiment , 1991 .
[32] T. Slanger,et al. Quantum yields for the production of O(1D) from photodissociation of O2 at 1160–1770 Å , 1977 .
[33] F. Stuhl,et al. Deactivation of O(1S) and O2(b1Σg , 1969 .
[34] Johannes Benkhoff,et al. BepiColombo—Comprehensive exploration of Mercury: Mission overview and science goals , 2010 .
[35] Gary J. Rottman,et al. Solar EUV Experiment (SEE): Mission overview and first results , 2005 .
[36] W. McClintock,et al. Solar–Stellar Irradiance Comparison Experiment II (SOLSTICE II): Pre-Launch and On-Orbit Calibrations , 2005 .
[37] Wolfgang L. Wiese,et al. Atomic Transition Probabilities of Carbon, Nitrogen, and Oxygen: A Critical Data Compilation , 1996 .
[38] Wolfgang L. Wiese,et al. Atomic Transition Probabilities , 1991 .
[39] D. L. Baulch,et al. Evaluated kinetic and photochemical data for atmospheric chemistry , 1980 .
[40] Leo Haser,et al. Distribution d’intensité dans la tête d’une comète , 1957, Bulletin de la Classe des sciences.