Astronomy and Astrophysics – Astrophysics
Scientific paper
May 1997
adsabs.harvard.edu/cgi-bin/nph-data_query?bibcode=1997a%26a...321l..13d&link_type=abstract
Astronomy and Astrophysics, v.321, p.L13-L16
Astronomy and Astrophysics
Astrophysics
72
Planets, Saturn, Infrared: Solar System
Scientific paper
The spectrum of Saturn has been recorded between 4.5 and 16.0μm with the grating mode of the Short-Wavelength Spectrometer (SWS) of ISO. The resolving power is 1500. The main results of this observation are (1) the detection of CO_2_, CH_3_C_2_H and C_4_H_2_ in the stratosphere and (2) the detection of H_2_O in the troposphere. In the 4.5-5.5μm range, information is retrieved on the tropospheric composition (NH_3_, PH_3_, AsH_3_, GeH_4_, CH_3_D and H_2_O) down to pressure levels of several bars. Above 7μm, the Saturn spectrum probes the upper troposphere and the lower stratosphere, at pressure levels ranging from 0.5bar to 0.4mbar. The CH_4_ emission band at 7.7μm and the H_2_-He continuum longward of 11μm are used to retrieve the thermal profile, which is then used to derive the vertical distributions of minor species: NH_3_, PH_3_, CH_3_D in the troposphere, and C_2_H_2_ and C_2_H_6_ in the stratosphere. Estimates of the CO_2_, CH_3_C_2_H and C_4_H_2_ mean mixing ratios (above the 10-mbar level) are 3x10^-10^, 6x10^-10^ and 9x10^-11^ respectively. The retrieved disk-averaged thermal profile is found to be colder in the stratosphere than the Voyager 1 ingress radio-occultation profile by about 7K at P=0.5mbar, and slightly warmer in the troposphere (about 5K at 400mbar and 3K at 150mb).
Beintema Douwe A.
Bezard Bruno
Davis Gary R.
de Graauw Th.
Drossart Pierre
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