Atmosfer Jupiter

Pola awan di Jupiter tahun 2000

Atmosfer Jupiter adalah atmosfer keplanetan terbesar dalam Tata Surya. Atmosfernya sebagian besar terbentuk dari hidrogen molekuler dan helium dalam proporsi solar yang lebih kurang sama; senyawa kimia lainnya hanya ada dalam jumlah kecil dan meliputi metana, amonia, hidrogen sulfida, dan air. Meskipun air diduga berada jauh di dalam atmosfer, konsentrasi terukur langsungnya sangat rendah. Nitrogen, sulfur, dan gas mulia melimpah dalam atmosfer Jupiter melebihi nilai solar yang disebabkan oleh sekitar tiga faktor.[1]

Atmosfer Jupiter tidak memiliki batas bawah yang jelas dan secara bertahap bertransisi menjadi bagian dalam planet yang cair.[2] Dari yang terendah sampai tertinggi, lapisan atmosfer adalah troposfer, stratosfer, termosfer, dan eksosfer. Setiap lapisan memiliki karakteristik gradien suhu.[3] Lapisan terendah, troposfer, memiliki sistem awan dan kabut yang rumit, yang terdiri dari lapisan amonia, amonium hidrosulfida, dan air.[4]

Referensi

Sumber kutipan

  • Atreya, Sushil K.; Wong, M. H.; Owen, T. C.; Mahaffy, P. R.; Niemann, H. B.; de Pater, I.; Drossart, P.; Encrenaz, T. (October–November 1999). "A comparison of the atmospheres of Jupiter and Saturn: Deep atmospheric composition, cloud structure, vertical mixing, and origin". Planetary and Space Science. 47 (10–11): 1243–1262. Bibcode:1999P&SS...47.1243A. doi:10.1016/S0032-0633(99)00047-1. ISSN 0032-0633. PMID 11543193. 
  • Atreya, Sushil K.; Mahaffy, P. R.; Niemann, H. B.; Wong, M. H.; Owen, T. C. (February 2003). "Composition and origin of the atmosphere of Jupiter—an update, and implications for the extrasolar giant planets". Planetary and Space Science. 51 (2): 105–112. Bibcode:2003P&SS...51..105A. doi:10.1016/S0032-0633(02)00144-7. ISSN 0032-0633. 
  • Atreya, Sushil K.; Wong, Ah-San (2005). "Coupled Clouds and Chemistry of the Giant Planets — A Case for Multiprobes" (PDF). Space Science Reviews. 116: 121–136. Bibcode:2005SSRv..116..121A. doi:10.1007/s11214-005-1951-5. ISSN 0032-0633. 
  • Atreya, Sushil K.; Wong, Ah-San; Baines, K. H.; Wong, M. H.; Owen, T. C. (2005). "Jupiter's ammonia clouds—localized or ubiquitous?" (PDF). Planetary and Space Science. 53 (5): 498–507. Bibcode:2005P&SS...53..498A. doi:10.1016/j.pss.2004.04.002. ISSN 0032-0633. 
  • Baines, Kevin H.; Simon-Miller, Amy A; Orton, Glenn S.; Weaver, Harold A.; Lunsford, Allen; Momary, Thomas W.; Spencer, John; Cheng, Andrew F.; Reuter, Dennis C. (12 October 2007). "Polar Lightning and Decadal-Scale Cloud Variability on Jupiter". Science. 318 (5848): 226–229. Bibcode:2007Sci...318..226B. doi:10.1126/science.1147912. PMID 17932285. 
  • Beatty, J.K. (2002). "Jupiter's Shrinking Red Spot". Sky and Telescope. 103 (4): 24. Diarsipkan dari versi asli tanggal 2011-05-27. Diakses tanggal 2017-03-23. 
  • Beebe, R. (1997). Jupiter the Giant Planet (edisi ke-2nd). Washington: Smithsonian Books. ISBN 1-56098-685-9. OCLC 224014042. 
  • Bhardwaj, Anil; Gladstone, G. Randall (2000). "Auroral emissions of the giant planets" (PDF). Reviews of Geophysics. 38 (3): 295–353. Bibcode:2000RvGeo..38..295B. doi:10.1029/1998RG000046. Diarsipkan dari versi asli (PDF) tanggal 2011-06-28. Diakses tanggal 2017-03-23. 
  • Busse, F.H. (1976). "A simple model of convection in the Jovian atmosphere". Icarus. 29 (2): 255–260. Bibcode:1976Icar...29..255B. doi:10.1016/0019-1035(76)90053-1. 
  • Encrenaz, Thérèse (February 2003). "ISO observations of the giant planets and Titan: what have we learnt?". Planetary and Space Science. 51 (2): 89–103. Bibcode:2003P&SS...51...89E. doi:10.1016/S0032-0633(02)00145-9. 
  • Fletcher, Leigh N.; Orton,, G.S.; Mousis, O.; Yanamandra-Fisher, P.; et al. (2010). "Thermal structure and composition of Jupiter's Great Red Spot from high-resolution thermal imaging" (PDF). Icarus. 208 (1): 306–328. Bibcode:2010Icar..208..306F. doi:10.1016/j.icarus.2010.01.005. 
  • Go, C.Y.; de Pater, I.; Wong, M.; Lockwood, S.; Marcus, P.; Asay-Davis, X.; Shetty, S. (2006). "Evolution Of The Oval Ba During 2004–2005". Bulletin of the American Astronomical Society. 38: 495. Bibcode:2006DPS....38.1102G. 
  • Graney, C. M. (2010). "Changes in the Cloud Belts of Jupiter, 1630–1664, as reported in the 1665 Astronomia Reformata of Giovanni Battista Riccioli". Baltic Astronomy. 19: 266. arXiv:1008.0566 alt=Dapat diakses gratis. Bibcode:2010BaltA..19..265G. 
  • Guillot, T. (1999). "A comparison of the interiors of Jupiter and Saturn". Planetary and Space Science. 47 (10–11): 1183–1200. arXiv:astro-ph/9907402 alt=Dapat diakses gratis. Bibcode:1999P&SS...47.1183G. doi:10.1016/S0032-0633(99)00043-4. 
  • Hammel, H.B.; Lockwood, G.W.; Mills, J.R.; Barnet, C.D. (1995). "Hubble Space Telescope Imaging of Neptune's Cloud Structure in 1994". Science. 268 (5218): 1740–1742. Bibcode:1995Sci...268.1740H. doi:10.1126/science.268.5218.1740. PMID 17834994. 
  • Heimpel, M.; Aurnou, J.; Wicht, J. (2005). "Simulation of equatorial and high-latitude jets on Jupiter in a deep convection model". Nature. 438 (7065): 193–196. Bibcode:2005Natur.438..193H. doi:10.1038/nature04208. PMID 16281029. 
  • Hockey, T. (1999). Galileo's Planet: Observing Jupiter Before Photography. Bristol, Philadelphia: Institute of Physics Publishing. ISBN 0-7503-0448-0. OCLC 39733730. 
  • Ingersoll, A.P.; Dowling, T.E.; Gierasch, P.J.; et al. (2004). "Dynamics of Jupiter's Atmosphere" (PDF). Dalam Bagenal, F.; Dowling, T.E.; McKinnon, W.B. Jupiter: The Planet, Satellites and Magnetosphere. Cambridge: Cambridge University Press. ISBN 0-521-81808-7. 
  • Ingersoll, A.P.; Cuzzi, J.N. (1969). "Dynamics of Jupiter's cloud bands". Journal of the Atmospheric Sciences. 26 (5): 981–985. Bibcode:1969JAtS...26..981I. doi:10.1175/1520-0469(1969)026<0981:DOJCB>2.0.CO;2. 
  • Irwin, P. (2003). Giant Planets of Our Solar System. Atmospheres, Composition, and Structure. Springer and Praxis. ISBN 978-3-540-00681-7. 
  • Kunde, V.G.; Flasar, F.M.; Jennings, D.E.; et al. (2004). "Jupiter's Atmospheric Composition from the Cassini Thermal Infrared Spectroscopy Experiment". Science. 305 (5690): 1582–1586. Bibcode:2004Sci...305.1582K. doi:10.1126/science.1100240. PMID 15319491. 
  • Low, F.J. (1966). "Observations of Venus, Jupiter, and Saturn at λ20 μ". Astronomical Journal. 71: 391. Bibcode:1966AJ.....71R.391L. doi:10.1086/110110. 
  • McKim, R.J. (1997). "P. B. Molesworth's discovery of the great South Tropical Disturbance on Jupiter, 1901". Journal of the British Astronomical Association. 107 (5): 239–245. Bibcode:1997JBAA..107..239M. 
  • Miller, Steve; Aylward, Alan; Millward, George (January 2005). "Giant Planet Ionospheres and Thermospheres: The Importance of Ion-Neutral Coupling". Space Science Reviews. 116 (1–2): 319–343. Bibcode:2005SSRv..116..319M. doi:10.1007/s11214-005-1960-4. 
  • Noll, K.S.; McGrath, M.A.; Weaver, H.A.; Yelle, R.V.; et al. (1995). "HST Spectroscopic Observations of Jupiter Following the Impact of Comet Shoemaker-Levy 9". Science. 267 (5202): 1307–1313. Bibcode:1995Sci...267.1307N. doi:10.1126/science.7871428. PMID 7871428. 
  • Pearl, J. C.; Conrath, B. J.; Hanel, R. A.; Pirraglia, J. A.; Coustenis, A. (March 1990). "The albedo, effective temperature, and energy balance of Uranus, as determined from Voyager IRIS data". Icarus. 84 (1): 12–28. Bibcode:1990Icar...84...12P. doi:10.1016/0019-1035(90)90155-3. ISSN 0019-1035. 
  • Reese, E.J.; Solberg, H.G. (1966). "Recent measures of the latitude and longitude of Jupiter's red spot". Icarus. 5 (1–6): 266–273. Bibcode:1966Icar....5..266R. doi:10.1016/0019-1035(66)90036-4. 
  • Ridpath, I. (1998). Norton's Star Atlas and Reference Handbook (edisi ke-19th). Harlow: Addison Wesley Longman. hlm. 107. ISBN 0-582-35655-5. 
  • Rogers, J.H. (1995). The Giant Planet Jupiter. Cambridge: Cambridge University Press. ISBN 0-521-41008-8. OCLC 219591510. 
  • Rogers, J.H.; Metig, H.J. (2001). "Jupiter in 1998/99" (PDF). Journal of the British Astronomical Association. 111 (6): 321–332. Bibcode:2001JBAA..111..321R. 
  • Rogers, J.H. (2003). "Jupiter in 1999/2000. II: Infrared wavelengths" (PDF). Journal of the British Astronomical Association. 113 (3): 136–140. Bibcode:2003JBAA..113..136R. 
  • Rogers, J.H. (2008). "The accelerating circulation of Jupiter's Great Red Spot" (PDF). Journal of the British Astronomical Association. 118 (1): 14–20. Bibcode:2008JBAA..118...14R. 
  • Sanchez-Lavega, A.; Orton, G.S.; Morales R.; et al. (2001). "The Merger of Two Giant Anticyclones in the Atmosphere of Jupiter". Icarus. 149 (2): 491–495. Bibcode:2001Icar..149..491S. doi:10.1006/icar.2000.6548. 
  • Sanchez-Lavega, A.; Orton, G.S.; Hueso, S.; et al. (2008). "Depth of the strong Jovian jet from a planetary scale disturbance driven by storms". Nature. 451 (7177): 437–440. Bibcode:2008Natur.451..437S. doi:10.1038/nature06533. PMID 18216848. 
  • Seiff, A.; Kirk, D.B.; Knight, T.C.D.; et al. (1998). "Thermal structure of Jupiter's atmosphere near the edge of a 5-μm hot spot in the north equatorial belt". Journal of Geophysical Research. 103 (E10): 22857–22889. Bibcode:1998JGR...10322857S. doi:10.1029/98JE01766. 
  • Smith, B.A.; Soderblom, L.A.; Johnson, T.V.; et al. (1979). "The Jupiter system through the eyes of Voyager 1". Science. 204 (4396): 951–957, 960–972. Bibcode:1979Sci...204..951S. doi:10.1126/science.204.4396.951. PMID 17800430. 
  • Stone, P.H. (1974). "On Jupiter's Rate of Rotation" (PDF). Journal of Atmospheric Sciences. 31 (5): 1471–1472. Bibcode:1974JAtS...31.1471S. doi:10.1175/1520-0469(1974)031<1471:OJROR>2.0.CO;2. 
  • Vasavada, A.R.; Showman, A. (2005). "Jovian atmospheric dynamics: An update after Galileo and Cassini". Reports on Progress in Physics. 68 (8): 1935–1996. Bibcode:2005RPPh...68.1935V. doi:10.1088/0034-4885/68/8/R06. 
  • West, R.A.; Baines, K.H.; Friedson, A.J.; et al. (2004). "Jovian Clouds and Haze". Dalam Bagenal, F.; Dowling, T.E.; McKinnon, W.B. Jupiter: The Planet, Satellites and Magnetosphere (PDF). Cambridge: Cambridge University Press. Diarsipkan dari versi asli (PDF) tanggal 2014-08-23. Diakses tanggal 2017-03-23. 
  • Yelle, R.V.; Miller, S. (2004). "Jupiter's Thermosphere and Ionosphere" (PDF). Dalam Bagenal, F.; Dowling, T.E.; McKinnon, W.B. Jupiter: The Planet, Satellites and Magnetosphere. Cambridge: Cambridge University Press. 

Bacaan lebih lanjut

  • [Numerous authors] (1999). Beatty, Kelly J.; Peterson, Carolyn Collins; Chaiki, Andrew, ed. The New Solar System (edisi ke-4th). Massachusetts: Sky Publishing Corporation. ISBN 0-933346-86-7. OCLC 39464951. 
  • Peek, Bertrand M. (1981). The Planet Jupiter: The Observer's Handbook (edisi ke-Revised). London: Faber and Faber Limited. ISBN 0-571-18026-4. OCLC 8318939. 
  • Yang, Sarah (April 21, 2004). "Researcher predicts global climate change on Jupiter as giant planet's spots disappear". UC Berkeley News. Diarsipkan dari versi asli tanggal 9 June 2007. Diakses tanggal 2007-06-14. 
  • Youssef, Ashraf; Marcus, Philip S. (2003). "The dynamics of jovian white ovals from formation to merger". Icarus. 162 (1): 74–93. Bibcode:2003Icar..162...74Y. doi:10.1016/S0019-1035(02)00060-X. 
  • Williams, Gareth P. (1975). "Jupiter's atmospheric circulation" (PDF). Nature. 257 (5529): 778. Bibcode:1975Natur.257..778W. doi:10.1038/257778a0. 
  • Williams, Gareth P. (1978). "Planetary Circulations: 1. Barotropic representation of Jovian and terrestrial turbulence" (PDF). Journal of the Atmospheric Sciences. 35 (8): 1399–1426. Bibcode:1978JAtS...35.1399W. doi:10.1175/1520-0469(1978)035<1399:PCBROJ>2.0.CO;2. 
  • Williams, Gareth P. (1985). "Jovian and comparative atmospheric modeling" (PDF). Advances in Geophysics. Advances in Geophysics. 28A: 381–429. Bibcode:1985AdGeo..28..381W. doi:10.1016/S0065-2687(08)60231-9. ISBN 978-0-12-018828-4. 
  • Williams, Gareth P. (1997). "Planetary vortices and Jupiter's vertical structure" (PDF). Journal of Geophysical Research. 102 (E4): 9303–9308. Bibcode:1997JGR...102.9303W. doi:10.1029/97JE00520. 
  • Williams, Gareth P. (1996). "Jovian Dynamics. Part I: Vortex stability, structure, and genesis" (PDF). Journal of the Atmospheric Sciences. 53 (18): 2685–2734. Bibcode:1996JAtS...53.2685W. doi:10.1175/1520-0469(1996)053<2685:JDPVSS>2.0.CO;2. 
  • Williams, Gareth P. (2002). "Jovian Dynamics.Part II: The genesis and equilibration of vortex sets" (PDF). Journal of the Atmospheric Sciences. 59 (8): 1356–1370. Bibcode:2002JAtS...59.1356W. doi:10.1175/1520-0469(2002)059<1356:JDPITG>2.0.CO;2. 
  • Williams, Gareth P. (2003). "Jovian Dynamics, Part III: Multiple, migrating, and equatorial jets" (PDF). Journal of the Atmospheric Sciences. 60 (10): 1270–1296. Bibcode:2003JAtS...60.1270W. doi:10.1175/1520-0469(2003)60<1270:JDPIMM>2.0.CO;2. 
  • Williams, Gareth P. (2003). "Super Circulations" (PDF). Bulletin of the American Meteorological Society. 84 (9): 1190. 
  • Williams, Gareth P. (2003). "Barotropic instability and equatorial superrotation" (PDF). Journal of the Atmospheric Sciences. 60 (17): 2136–2152. Bibcode:2003JAtS...60.2136W. doi:10.1175/1520-0469(2003)060<2136:BIAES>2.0.CO;2. 
  • Williams, Gareth P. (2003). "Jet sets" (PDF). Journal of the Meteorological Society of Japan. 81 (3): 439–476. doi:10.2151/jmsj.81.439. 
  • Williams, Gareth P. (2006). "Equatorial Superrotation and Barotropic Instability: Static Stability Variants" (PDF). Journal of the Atmospheric Sciences. 63 (5): 1548–1557. Bibcode:2006JAtS...63.1548W. doi:10.1175/JAS3711.1. 

Pranala luar

  • Media terkait Atmosphere of Jupiter di Wikimedia Commons