Limits to the abundance of surface CO2 ice on Titan

被引:7
作者
Hartung, M.
Herbst, T. M.
Dumas, C.
Coustenis, A.
机构
[1] European So Observ, Santiago 19, Chile
[2] Max Planck Inst Astron, D-69117 Heidelberg, Germany
[3] Observ Paris, LESIA, F-92195 Meudon, France
关键词
D O I
10.1029/2005JE002642
中图分类号
P3 [地球物理学]; P59 [地球化学];
学科分类号
0708 ; 070902 ;
摘要
[ 1] In the context of the Cassini/Huygens mission, we performed supporting groundbased observations to complement the results from the NASA/ESA/ASI space mission to the Saturnian system with particular focus on Titan. On the nights of 18 and 19 December 2004, we conducted adaptive optics observations with VLT/NACO to search for and map the distribution of CO2 ice deposits on the spatially resolved surface of Titan ( 65 mas resolution). This experiment became possible because ( 1) solid CO2 possesses two narrow and strong absorption lines at 2012 nm and 2070 nm that fall into the 2.05 mm window of Titan's atmosphere and ( 2) the width of these bands matches the band pass of the Fabry-Perot instrument installed in NACO. We do not detect this chemical compound, but we can derive firm limits on the abundance of CO2 ice on the surface of Titan at sub-Earth longitudes 284 degrees W and 307 degrees W. With a spatial sampling of 65 mas, we conclude that a partial surface coverage of segregated CO2 ice does not exceed 7% or 14% for bright or dark surface regions, respectively.
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页数:7
相关论文
共 16 条
[1]   A 5-micron-bright spot on Titan: Evidence for surface diversity [J].
Barnes, JW ;
Brown, RH ;
Turtle, EP ;
McEwen, AS ;
Lorenz, RD ;
Janssen, M ;
Schaller, EL ;
Brown, ME ;
Buratti, BJ ;
Sotin, C ;
Griffith, C ;
Clark, R ;
Perry, J ;
Fussner, S ;
Barbara, J ;
West, R ;
Elachi, C ;
Bouchez, AH ;
Roe, HG ;
Baines, KH ;
Bellucci, G ;
Bibring, JP ;
Capaccioni, F ;
Cerroni, P ;
Combes, M ;
Coradini, A ;
Cruikshank, DP ;
Drossart, P ;
Formisano, V ;
Jaumann, R ;
Langevin, Y ;
Matson, DL ;
McCord, TB ;
Nicholson, PD ;
Sicardy, B .
SCIENCE, 2005, 310 (5745) :92-95
[2]  
CLOSE LM, 2005, SCI ADAPTIVE OPTICS, P136
[3]   Titan's 3-micron spectral region from ISO high-resolution spectroscopy [J].
Coustenis, A ;
Negrao, A ;
Salama, A ;
Schulz, B ;
Lellouch, E ;
Rannou, P ;
Drossart, P ;
Encrenaz, T ;
Schmitt, B ;
Boudon, V ;
Nikitin, A .
ICARUS, 2006, 180 (01) :176-185
[4]   ICES ON THE SURFACE OF TRITON [J].
CRUIKSHANK, DP ;
ROUSH, TL ;
OWEN, TC ;
GEBALLE, TR ;
DEBERGH, C ;
SCHMITT, B ;
BROWN, RH ;
BARTHOLOMEW, MJ .
SCIENCE, 1993, 261 (5122) :742-745
[5]   Evidence for the exposure of water ice on Titan's surface [J].
Griffith, CA ;
Owen, T ;
Geballe, TR ;
Rayner, J ;
Rannou, P .
SCIENCE, 2003, 300 (5619) :628-630
[6]   Discovery of CO2 ice and leading-trailing spectral asymmetry on the uranian satellite Ariel [J].
Grundy, WM ;
Young, LA ;
Young, EF .
ICARUS, 2003, 162 (01) :222-229
[7]  
Hapke B., 1993, TOPICS REMOTE SENS, V3
[8]   Commissioning of the NACO Fabry-Perot Interferometer at the VLT [J].
Hartung, M ;
Lidman, C ;
Ageorges, N ;
Marco, O ;
Kasper, M ;
Clenet, Y .
GROUND-BASED INSTRUMENTATION FOR ASTRONOMY, PTS 1-3, 2004, 5492 :1531-1541
[9]   A new VLT surface map of Titan at 1.575 microns [J].
Hartung, M ;
Herbst, TM ;
Close, LM ;
Lenzen, R ;
Brandner, W ;
Marco, O ;
Lidman, C .
ASTRONOMY & ASTROPHYSICS, 2004, 421 (01) :L17-L20
[10]   An overview of the descent and landing of the Huygens probe on Titan [J].
Lebreton, JP ;
Witasse, O ;
Sollazzo, C ;
Blancquaert, T ;
Couzin, P ;
Schipper, AM ;
Jones, JB ;
Matson, DL ;
Gurvits, LI ;
Atkinson, DH ;
Kazeminejad, B ;
Pérez-Ayúcar, M .
NATURE, 2005, 438 (7069) :758-764