大気散逸 (Japanese Wikipedia)

Analysis of information sources in references of the Wikipedia article "大気散逸" in Japanese language version.

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  • Catling, David C.; Zahnle, Kevin J. (2009). “The Planetary Air Leak”. Scientific American 300 (5): 36–43. Bibcode2009SciAm.300e..36C. doi:10.1038/scientificamerican0509-36. ISSN 0036-8733. 
  • Vidal-Madjar, A.; Dsert, J.-M.; Etangs, A. Lecavelier des; Hbrard, G.; Ballester, G. E.; Ehrenreich, D.; Ferlet, R.; McConnell, J. C. et al. (2004). “Detection of Oxygen and Carbon in the Hydrodynamically Escaping Atmosphere of the Extrasolar Planet HD 209458b”. The Astrophysical Journal 604 (1): L69–L72. arXiv:astro-ph/0401457. Bibcode2004ApJ...604L..69V. doi:10.1086/383347. ISSN 0004-637X. 
  • Shematovich, V I; Marov, M Ya (2018). “Escape of planetary atmospheres: physical processes and numerical models”. Physics-Uspekhi 61 (3): 217–246. Bibcode2018PhyU...61..217S. doi:10.3367/UFNe.2017.09.038212. ISSN 1063-7869. 
  • Lundin, Rickard; Lammer, Helmut; Ribas, Ignasi (2007). “Planetary Magnetic Fields and Solar Forcing: Implications for Atmospheric Evolution”. Space Science Reviews 129 (1-3): 245–278. Bibcode2007SSRv..129..245L. doi:10.1007/s11214-007-9176-4. ISSN 0038-6308. 
  • Zhang, M. H. G.; Luhmann, J. G.; Nagy, A. F.; Spreiter, J. R.; Stahara, S. S. (1993). “Oxygen ionization rates at Mars and Venus: Relative contributions of impact ionization and charge exchange”. Journal of Geophysical Research: Planets 98 (E2): 3311–3318. Bibcode1993JGR....98.3311Z. doi:10.1029/92JE02229. ISSN 01480227. 
  • Luhmann, J. G.; Kozyra, J. U. (1991). “Dayside pickup oxygen ion precipitation at Venus and Mars: Spatial distributions, energy deposition and consequences”. Journal of Geophysical Research 96 (A4): 5457. Bibcode1991JGR....96.5457L. doi:10.1029/90JA01753. ISSN 0148-0227. 
  • Melosh, H. J.; Vickery, A. M. (1989). “Impact erosion of the primordial atmosphere of Mars”. Nature 338 (6215): 487–489. Bibcode1989Natur.338..487M. doi:10.1038/338487a0. ISSN 0028-0836. 
  • Ahrens, T J (1993). “Impact Erosion of Terrestrial Planetary Atmospheres”. Annual Review of Earth and Planetary Sciences 21 (1): 525–555. Bibcode1993AREPS..21..525A. doi:10.1146/annurev.ea.21.050193.002521. hdl:2060/19920021677. ISSN 0084-6597. 
  • Terada, Kentaro; Yokota, Shoichiro; Saito, Yoshifumi; Kitamura, Naritoshi; Asamura, Kazushi; Nishino, Masaki N. (2017). “Biogenic oxygen from Earth transported to the Moon by a wind of magnetospheric ions”. Nature Astronomy 1 (2). Bibcode2017NatAs...1E..26T. doi:10.1038/s41550-016-0026. ISSN 2397-3366. 
  • Chamberlain, J. W.; Hunten, D. M. (1987). Theory of planetary atmospheres. An introduction to their physics andchemistry.. Academic Press Inc.. Bibcode1987tpaa.book.....C. ISBN 0-12-167251-4 
  • Lammer, H.; Lichtenegger, H.I.M.; Biernat, H.K.; Erkaev, N.V.; Arshukova, I.L.; Kolb, C.; Gunell, H.; Lukyanov, A. et al. (2006). “Loss of hydrogen and oxygen from the upper atmosphere of Venus”. Planetary and Space Science 54 (13-14): 1445–1456. Bibcode2006P&SS...54.1445L. doi:10.1016/j.pss.2006.04.022. ISSN 00320633. 
  • Edberg, N. J. T.; Nilsson, H.; Futaana, Y.; Stenberg, G.; Lester, M.; Cowley, S. W. H.; Luhmann, J. G.; McEnulty, T. R. et al. (2011). “Atmospheric erosion of Venus during stormy space weather”. Journal of Geophysical Research: Space Physics 116 (A9): n/a–n/a. Bibcode2011JGRA..116.9308E. doi:10.1029/2011JA016749. ISSN 01480227. 
  • Jakosky, B.M.; Brain, D.; Chaffin, M.; Curry, S.; Deighan, J.; Grebowsky, J.; Halekas, J.; Leblanc, F. et al. (2018). “Loss of the Martian atmosphere to space: Present-day loss rates determined from MAVEN observations and integrated loss through time”. Icarus 315: 146–157. Bibcode2018Icar..315..146J. doi:10.1016/j.icarus.2018.05.030. ISSN 00191035. 
  • Lammer, H.; Stumptner, W.; Bauer, S.J. (1998). “Dynamic escape of H from Titan as consequence of sputtering induced heating”. Planetary and Space Science 46 (9-10): 1207–1213. Bibcode1998P&SS...46.1207L. doi:10.1016/S0032-0633(98)00050-6. ISSN 00320633. 
  • Wilson, Jody K.; Mendillo, Michael; Baumgardner, Jeffrey; Schneider, Nicholas M.; Trauger, John T.; Flynn, Brian (2002). “The Dual Sources of Io's Sodium Clouds”. Icarus 157 (2): 476–489. Bibcode2002Icar..157..476W. doi:10.1006/icar.2002.6821. ISSN 00191035. 
  • Owen, James E. (2019). “Atmospheric Escape and the Evolution of Close-In Exoplanets”. Annual Review of Earth and Planetary Sciences 47 (1): 67–90. arXiv:1807.07609. Bibcode2019AREPS..47...67O. doi:10.1146/annurev-earth-053018-060246. ISSN 0084-6597. 
  • Vidal-Madjar, A.; des Etangs, A. Lecavelier; Désert, J.-M.; Ballester, G. E.; Ferlet, R.; Hébrard, G.; Mayor, M. (2003). “An extended upper atmosphere around the extrasolar planet HD209458b”. Nature 422 (6928): 143–146. Bibcode2003Natur.422..143V. doi:10.1038/nature01448. ISSN 0028-0836. PMID 12634780. 
  • Lecavelier des Etangs, A.; Ehrenreich, D.; Vidal-Madjar, A.; Ballester, G. E.; Désert, J.-M.; Ferlet, R.; Hébrard, G.; Sing, D. K. et al. (2010). “Evaporation of the planet HD 189733b observed in H I Lyman-α”. Astronomy and Astrophysics 514: A72. arXiv:1003.2206. Bibcode2010A&A...514A..72L. doi:10.1051/0004-6361/200913347. ISSN 0004-6361. 
  • Ehrenreich, David; Bourrier, Vincent; Wheatley, Peter J.; des Etangs, Alain Lecavelier; Hébrard, Guillaume; Udry, Stéphane; Bonfils, Xavier; Delfosse, Xavier et al. (2015). “A giant comet-like cloud of hydrogen escaping the warm Neptune-mass exoplanet GJ 436b”. Nature 522 (7557): 459–461. arXiv:1506.07541. Bibcode2015Natur.522..459E. doi:10.1038/nature14501. ISSN 0028-0836. PMID 26108854. 

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  • Catling, David C.; Zahnle, Kevin J. (2009). “The Planetary Air Leak”. Scientific American 300 (5): 36–43. Bibcode2009SciAm.300e..36C. doi:10.1038/scientificamerican0509-36. ISSN 0036-8733. 
  • Vidal-Madjar, A.; Dsert, J.-M.; Etangs, A. Lecavelier des; Hbrard, G.; Ballester, G. E.; Ehrenreich, D.; Ferlet, R.; McConnell, J. C. et al. (2004). “Detection of Oxygen and Carbon in the Hydrodynamically Escaping Atmosphere of the Extrasolar Planet HD 209458b”. The Astrophysical Journal 604 (1): L69–L72. arXiv:astro-ph/0401457. Bibcode2004ApJ...604L..69V. doi:10.1086/383347. ISSN 0004-637X. 
  • Shematovich, V I; Marov, M Ya (2018). “Escape of planetary atmospheres: physical processes and numerical models”. Physics-Uspekhi 61 (3): 217–246. Bibcode2018PhyU...61..217S. doi:10.3367/UFNe.2017.09.038212. ISSN 1063-7869. 
  • Lundin, Rickard; Lammer, Helmut; Ribas, Ignasi (2007). “Planetary Magnetic Fields and Solar Forcing: Implications for Atmospheric Evolution”. Space Science Reviews 129 (1-3): 245–278. Bibcode2007SSRv..129..245L. doi:10.1007/s11214-007-9176-4. ISSN 0038-6308. 
  • 佐々木晶, 田近英一「希ガス脱ガスモデルに基づく金星・火星の火成活動史」『地震 第2輯』第48巻第1号、日本地震学会、1995年5月、119-129頁、doi:10.4294/zisin1948.48.1_119ISSN 00371114NAID 10006083342 
  • 寺田直樹、品川裕之、阿部琢美「プラズマと大気の散逸」(PDF)『遊・星・人』第13巻第1号、日本惑星科学会、2004年、12-17頁、ISSN 0918273XNAID 1100033203502021年4月15日閲覧 
  • Zhang, M. H. G.; Luhmann, J. G.; Nagy, A. F.; Spreiter, J. R.; Stahara, S. S. (1993). “Oxygen ionization rates at Mars and Venus: Relative contributions of impact ionization and charge exchange”. Journal of Geophysical Research: Planets 98 (E2): 3311–3318. Bibcode1993JGR....98.3311Z. doi:10.1029/92JE02229. ISSN 01480227. 
  • Luhmann, J. G.; Kozyra, J. U. (1991). “Dayside pickup oxygen ion precipitation at Venus and Mars: Spatial distributions, energy deposition and consequences”. Journal of Geophysical Research 96 (A4): 5457. Bibcode1991JGR....96.5457L. doi:10.1029/90JA01753. ISSN 0148-0227. 
  • Melosh, H. J.; Vickery, A. M. (1989). “Impact erosion of the primordial atmosphere of Mars”. Nature 338 (6215): 487–489. Bibcode1989Natur.338..487M. doi:10.1038/338487a0. ISSN 0028-0836. 
  • Ahrens, T J (1993). “Impact Erosion of Terrestrial Planetary Atmospheres”. Annual Review of Earth and Planetary Sciences 21 (1): 525–555. Bibcode1993AREPS..21..525A. doi:10.1146/annurev.ea.21.050193.002521. hdl:2060/19920021677. ISSN 0084-6597. 
  • Terada, Kentaro; Yokota, Shoichiro; Saito, Yoshifumi; Kitamura, Naritoshi; Asamura, Kazushi; Nishino, Masaki N. (2017). “Biogenic oxygen from Earth transported to the Moon by a wind of magnetospheric ions”. Nature Astronomy 1 (2). Bibcode2017NatAs...1E..26T. doi:10.1038/s41550-016-0026. ISSN 2397-3366. 
  • Lammer, H.; Lichtenegger, H.I.M.; Biernat, H.K.; Erkaev, N.V.; Arshukova, I.L.; Kolb, C.; Gunell, H.; Lukyanov, A. et al. (2006). “Loss of hydrogen and oxygen from the upper atmosphere of Venus”. Planetary and Space Science 54 (13-14): 1445–1456. Bibcode2006P&SS...54.1445L. doi:10.1016/j.pss.2006.04.022. ISSN 00320633. 
  • Edberg, N. J. T.; Nilsson, H.; Futaana, Y.; Stenberg, G.; Lester, M.; Cowley, S. W. H.; Luhmann, J. G.; McEnulty, T. R. et al. (2011). “Atmospheric erosion of Venus during stormy space weather”. Journal of Geophysical Research: Space Physics 116 (A9): n/a–n/a. Bibcode2011JGRA..116.9308E. doi:10.1029/2011JA016749. ISSN 01480227. 
  • Jakosky, B. M.; Slipski, M.; Benna, M.; Mahaffy, P.; Elrod, M.; Yelle, R.; Stone, S.; Alsaeed, N. (2017). “Mars’ atmospheric history derived from upper-atmosphere measurements of38Ar/36Ar”. Science 355 (6332): 1408–1410. doi:10.1126/science.aai7721. ISSN 0036-8075. 
  • Jakosky, B.M.; Brain, D.; Chaffin, M.; Curry, S.; Deighan, J.; Grebowsky, J.; Halekas, J.; Leblanc, F. et al. (2018). “Loss of the Martian atmosphere to space: Present-day loss rates determined from MAVEN observations and integrated loss through time”. Icarus 315: 146–157. Bibcode2018Icar..315..146J. doi:10.1016/j.icarus.2018.05.030. ISSN 00191035. 
  • Lammer, H.; Stumptner, W.; Bauer, S.J. (1998). “Dynamic escape of H from Titan as consequence of sputtering induced heating”. Planetary and Space Science 46 (9-10): 1207–1213. Bibcode1998P&SS...46.1207L. doi:10.1016/S0032-0633(98)00050-6. ISSN 00320633. 
  • Wilson, Jody K.; Mendillo, Michael; Baumgardner, Jeffrey; Schneider, Nicholas M.; Trauger, John T.; Flynn, Brian (2002). “The Dual Sources of Io's Sodium Clouds”. Icarus 157 (2): 476–489. Bibcode2002Icar..157..476W. doi:10.1006/icar.2002.6821. ISSN 00191035. 
  • Owen, James E. (2019). “Atmospheric Escape and the Evolution of Close-In Exoplanets”. Annual Review of Earth and Planetary Sciences 47 (1): 67–90. arXiv:1807.07609. Bibcode2019AREPS..47...67O. doi:10.1146/annurev-earth-053018-060246. ISSN 0084-6597. 
  • Vidal-Madjar, A.; des Etangs, A. Lecavelier; Désert, J.-M.; Ballester, G. E.; Ferlet, R.; Hébrard, G.; Mayor, M. (2003). “An extended upper atmosphere around the extrasolar planet HD209458b”. Nature 422 (6928): 143–146. Bibcode2003Natur.422..143V. doi:10.1038/nature01448. ISSN 0028-0836. PMID 12634780. 
  • Lecavelier des Etangs, A.; Ehrenreich, D.; Vidal-Madjar, A.; Ballester, G. E.; Désert, J.-M.; Ferlet, R.; Hébrard, G.; Sing, D. K. et al. (2010). “Evaporation of the planet HD 189733b observed in H I Lyman-α”. Astronomy and Astrophysics 514: A72. arXiv:1003.2206. Bibcode2010A&A...514A..72L. doi:10.1051/0004-6361/200913347. ISSN 0004-6361. 
  • Ehrenreich, David; Bourrier, Vincent; Wheatley, Peter J.; des Etangs, Alain Lecavelier; Hébrard, Guillaume; Udry, Stéphane; Bonfils, Xavier; Delfosse, Xavier et al. (2015). “A giant comet-like cloud of hydrogen escaping the warm Neptune-mass exoplanet GJ 436b”. Nature 522 (7557): 459–461. arXiv:1506.07541. Bibcode2015Natur.522..459E. doi:10.1038/nature14501. ISSN 0028-0836. PMID 26108854. 

worldcat.org

  • Goldston, R. J. (1995). Introduction to plasma physics. Rutherford, P. H. (Paul Harding), 1938-. Bristol, UK: Institute of Physics Pub. ISBN 0750303255. OCLC 33079555