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ACETYLENE ON TITAN'S SURFACE
被引:39
|作者:
Singh, S.
[1
,2
]
McCord, T. B.
[1
]
Combe, J-Ph.
[1
]
Rodriguez, S.
[3
]
Cornet, T.
[4
]
Le Mouelic, S.
[5
]
Clark, R. N.
[6
]
Maltagliati, L.
[3
]
Chevrier, V. F.
[2
]
机构:
[1] Bear Fight Inst, 22 Fiddlers Rd, Winthrop, WA 98862 USA
[2] Univ Arkansas, Arkansas Ctr Space & Planetary Sci, Fayetteville, AR 72701 USA
[3] Univ Paris Diderot, CEA Saclay, CNRS UMR 7158, Lab Astrophys Instrumentat & Modelisat AIM, F-91191 Gif Sur Yvette, France
[4] ESA, ESAC, POB 78, E-28691 Villanueva De La Caada, Madrid, Spain
[5] Univ Nantes, UMR CNRS 6112, Lab Planetol & Geodynam Nantes, 2 Rue Houssiniere BP92208, Nantes 3, France
[6] US Geol Survey, Denver Fed Ctr, Denver, CO 80225 USA
来源:
关键词:
planets and satellites: atmospheres;
planets and satellites: composition;
planets and satellites: detection;
planets and satellites: surfaces;
techniques: spectroscopic;
HUYGENS LANDING SITE;
COUPLING PHOTOCHEMISTRY;
CHEMICAL-COMPOSITION;
HAZE FORMATION;
ATMOSPHERE;
CASSINI/VIMS;
SPECTRA;
MODEL;
HYDROCARBONS;
DIACETYLENE;
D O I:
10.3847/0004-637X/828/1/55
中图分类号:
P1 [天文学];
学科分类号:
0704 ;
摘要:
Titan's atmosphere is opaque in the near-infrared due to gaseous absorptions, mainly by methane, and scattering by aerosols, except in a few "transparency windows." Thus, the composition of Titan's surface remains difficult to access from space and is still poorly constrained. Photochemical models suggest that most of the organic compounds formed in the atmosphere are heavy enough to condense and build up at the surface in liquid and solid states over geological timescales. Acetylene (C2H2) net production in the atmosphere is predicted to be larger than any other compound and C2H2 has been speculated to exist on the surface of Titan. C2H2 was detected as a trace gas sublimated/evaporated from the surface using the Gas Chromatograph Mass Spectrometer after the landing of the Huygens probe. Here we show evidence of C2H2 on the surface of Titan by detecting absorption bands at 1.55 and 4.93 mu m using the Cassini Visual and Infrared Mapping Spectrometer at three different equatorial areas-Tui Regio, eastern Shangri La, and Fensal-Aztlan/Quivira. We found that C2H2 is preferentially detected in lowalbedo areas, such as sand dunes and near the Huygens landing site. The specific location of the v detections suggests that C2H2 is mobilized by surface processes, such as surface weathering by liquids through dissolution/ evaporation processes.
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