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References and acknowledgements

Published online by Cambridge University Press:  05 September 2014

Fredric W. Taylor
Affiliation:
University of Oxford
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Print publication year: 2014

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References

Moore, Patrick 2002. Venus, London: Cassell & Co.Google Scholar
Maunder, M. and Moore, P. ‘Transit: When Planets Cross the Sun’, p. 38, London, 1999.
Lowell, P. 1897, ‘Rotation period and surface character of Venus’, Monthly Notices of the Royal Astronomical Society, vol. 57, 148–149,Google Scholar
Lowell, P. 1897The Rotation Period of Venus’, Astromische Nachrichten, 3406, 24–25.Google Scholar
Boyer, C. and Guérin, P. 1969. ‘Etude de la rotation rétrograde, en 4 jours, de la couche extérieure nuageuse de Vénus’, Icarus 11: 338–355.CrossRefGoogle Scholar
Barker, E. 1975. ‘Observations of Venus water vapor over the disc of Venus: the 1972–74 data using the H2O lines at 8197 and 8176 Å’, Icarus 25: 268–281.CrossRefGoogle Scholar
Koppes, Clayton R. 1982. ‘JPL and the American Space Program: A History of the Jet Propulsion Laboratory’, New Haven, CT: Yale University Press.CrossRefGoogle Scholar
Journal of Geophysical Research: Space Physics 85/A13: 30 December 1980.
Hunten, D., Colin, L., Donahue, T. and Moroz, V. (eds.) 1982. Venus, Tucson: University of Arizona Press.
Goldstein, R. 1967. ‘Radar Studies of Venus’, in Moon and Planets, Dollfus, A. ed., Amsterdam: North-Holland.Google Scholar
Lang, Kenneth R. 2003. The Cambridge Guide to the Solar System. Cambridge University Press, Cambridge.Google Scholar
ESA, 1994. Horizon 2000+: European Space Science in the 21st Century. ESA SP-1180, Noordwijk.
Allen, D. A. and Crawford, J. W. 1984. ‘Cloud structure on the dark side of Venus’, Nature 307: 222–224.CrossRefGoogle Scholar
Kamp, L. W., Taylor, F. W. and Calcutt, S. B. 1988, ‘Structure of Venus’s atmosphere from modelling of night side infrared spectra’, Nature 336: 360–362.CrossRefGoogle Scholar
Kamp, L. W. and Taylor, F. W., 1990. ‘Radiative transfer models of the night side of Venus’, Icarus 86: 510–529.CrossRefGoogle Scholar
Bézard, B., de Bergh, C., Crisp, D. and Millard, J.-P. 1990. ‘The deep atmosphere of Venus revealed by high resolution nightside spectra’, Nature 345: 508–511.CrossRefGoogle Scholar
Carlson, R. W., Baines, K. H., Girard, M., Kamp, L. W., Drossart, P., Encrenaz, T. and Taylor, F. W. 1993. ‘Galileo/NIMS near-infrared thermal imagery of the surface of Venus’, Lunar and Planetary Science Conference XXIV Abstracts: 253.Google Scholar
Collard, A. D., Taylor, F. W., Calcutt, S. B., Carlson, R. W., Kamp, L., Baines, K., Encrenaz, Th., Drossart, P., Lellouch, E. and Bézard, B. 1993. ‘Latitudinal distribution of carbon monoxide in the deep atmosphere of Venus’, Planetary and Space Science 41/7: 487–494.CrossRefGoogle Scholar
Taylor, F. W. 1995. ‘Carbon monoxide in the deep atmosphere of Venus’, Advances in Space Research 16/6: 81–88.CrossRefGoogle Scholar
Baines, K. H., Bellucci, G., Bibring, J. -P., Brown, R. H., Buratti, B. J., Bussoletti, E., Capaccioni, F., Cerroni, P., Clark, R. N., Coradini, A., Cruikshank, D. P., Drossart, P., Formisano, V., Jaumann, R., Langevin, Y., Matson, D. L., McCord, T. B., Mennella, V., Nelson, R. M., Nicholson, P. D., Sicardy, B., Sotin, C., Hansen, G. B., Aiello, J. J., Amici, S., 2000. ‘Detection of sub-micron radiation from the surface of Venus by Cassini/VIMS’, Icarus 148: 307–311.CrossRefGoogle Scholar
Taylor, F. W. (ed.) 2006. Planetary and Space Science, special issue, ‘The planet Venus and the Venus Express mission’, 54/13–14: 1247–1496.CrossRef
Titov, D. V. (ed.) 2009. ‘Venus Express: results of the nominal mission’, Journal of Geophysical Research 115/E5 and E9.
Svedhem, H., Witasse, O., Sohl, F., Titov, D. and Grinspoon, D. (eds.) 2011. Planetary and Space Science, special issue ‘Comparative planetology: Venus-Earth-Mars’, 59/10: 887–1112.CrossRef
Exploring Venus as a Terrestrial Planet 2007, Geophysical Monograph No. 176, American Geophysical Union.
Magellan special edition, January 1992. Journal of Geophysical Research, volume 97, part E10.
Taylor, F. W. 2010. Planetary Atmospheres, Oxford University Press.Google Scholar
Lopez-Puertas, M. and Taylor, F. W. 2002. Non-Local Thermodynamic Equilibrium in Atmospheres. London: World Scientific Publishing.Google Scholar
Keating, G. M., Taylor, F. W., Nicholson, J. Y. and Hinson, E. W. 1979. ‘Short-term cyclic variations of the Venus upper atmosphere’, Science 205: 62–65.CrossRefGoogle ScholarPubMed
Schofield, J. T. and Taylor, F. W. 1982. ‘Net global thermal emission from the Venus atmosphere’, Icarus 52: 245–262.CrossRefGoogle Scholar
Esposito, L. W. 1984. ‘Sulfur dioxide: Episodic injection shows evidence for active Venus volcanism’, Science 223: 1072–1074.CrossRefGoogle ScholarPubMed
Hashimoto, G. L. and Abe, Y. 2005. ‘Climate control on Venus: comparison of the carbonate and pyrite models’, Planet. Space Science 53: 839–848.CrossRefGoogle Scholar
Head, J., Crumpler, L.Aubele, J.Guest, J. and Saunders, R. 1992. ‘Venus volcanism: classification of volcanic features and structures, associations, and global distribution from Magellan data’, Journal of Geophysical Research 97(E8): 13153–13197.CrossRefGoogle Scholar
Marcq, E., Bertaux, J-L., Montmessin, F. and Belyaev, D. 2012. ‘Variations of sulphur dioxide at the cloud top of Venus/’s dynamic atmosphere’, Nature Geoscience. .Google Scholar
Taylor, F. W. and Grinspoon, D. H. 2009. ‘Climate evolution of Venus’, Journal of Geophysical Research 114: E00B40, .CrossRefGoogle Scholar
Zhang, X., Liang, M-C., Montmessin, F., Bertaux, J-L., Parkinson, C. and Yung, Y. L. 2010. ‘Photolysis of sulphuric acid as the source of sulphur oxides in the mesosphere of Venus’, Nature Geoscience. .CrossRefGoogle Scholar
Solomon, S. and Head, J. 1982. ‘Mechanisms for lithospheric heat transport on Venus: Implications for tectonic style and volcanism’, Journal of Geophysical Research 87(B11), 1393–1396.CrossRefGoogle Scholar
Knollenberg, R. G. and Hunten, D. M. 1980. ‘The microphysics of the clouds of Venus: Results of the Pioneer Venus nephelometer experiment’, Journal of Geophysical Research 85(A13), 8,039–8,058.CrossRefGoogle Scholar
Grinspoon, D. H., Pollack, J. B., Sitton, B. R., Carlson, R. W., Kamp, L. W., Baines, K. H., Encrenaz, T. and Taylor, F. W. 1993. ‘Probing Venus’s cloud structure with Galileo NIMS’’, Planetary and Space Science 41: 515–542.CrossRefGoogle Scholar
Barstow, J. K., Tsang, C. C. C., Wilson, C. F., Irwin, P. G. J., Taylor, F. W., McGouldrick, K., Drossart, P., Piccioniand, G. and Tellmann, S. 2012. ‘Models of the global cloud structure on Venus derived from Venus Express observations’, Icarus 217/2: 542–560.CrossRefGoogle Scholar
Mills, F. P., Esposito, L. W. and Yung, Y. L. 2007. In Venus as a Terrestrial Planet, AGU Geophysical Monograph No. 176.
Esposito, L. W., Knollenberg, R. G., Marov, M. Ya., Toon, O. B. and Turco, R. P. 1983. ‘The clouds and hazes on Venus’, in Venus, ed. Hunten, D. M., Colin, L., Donahue, T. M. and Moroz, V. I., Tucson, University of Arizona Press.Google Scholar
Esposito, L. W., Bertaux, J-L., Krasnopolsky, V., Moroz, V. I. and Zasova, L. V. 1997. ‘Chemistry of lower atmosphere and clouds’ in Venus 2, ed. Bougher, S. W., Hunten, D. M. and Phillips, R. J., Tucson, University of Arizona Press.Google Scholar
Carlson, R. W., Kamp, L. W., Baines, K. H., Pollack, J. B., Grinspoon, D. H., Encrenaz, T., Drossart, P., Taylor, F. W. 1993. ‘Variations in Venus cloud-particle properties: a new view of Venus’s cloud morphology as observed by the Galileo near infrared mapping spectrometer’, Planetary and Space Science 41: 477–485.Google Scholar
Hansen, J. E. and Hovenier, J. W., 1974. ‘Interpretation of the polarization of Venus’, Journal of Atmospheric Sciences 31: 1137–1160.2.0.CO;2>CrossRefGoogle Scholar
Murray, B. C., Belton, M. J., Danielson, G. E., Davies, M. E., Gault, D., Hapke, B., O’leary, B., Strom, R. G., Suomi, V. and Trask, N. 1974. ‘Venus: atmospheric motion and structure from Mariner 10 pictures’, Science 183(4131): 1307–15.CrossRefGoogle ScholarPubMed
Sanchez-Lavega, A., Hueso, R., Piccioni, G., Drossart, P., Peralta, J., Perez-Hoyos, S., Wilson, C. F., Taylor, F. W., Baines, K. H., Luz, D., Erard, S. and Lebonnois, S. 2008. ‘Variable winds on Venus mapped in three dimensions’, Geophysical Research Letters 35/ L13204, .CrossRefGoogle Scholar
Tsang, C. C. C., Irwin, P. G. J., Taylor, F. W., Wilson, C. F., Lee, C., de Kok, R., Drossart, P., Piccioni, G., Bezard, B., Calcutt, S. and Venus Express/VIRTIS Team 2008. ‘Tropospheric Carbon Monoxide Concentrations and Variability on Venus from Venus Express/VIRTIS-M Observations’, Journal of Geophysical Research 113/E00B08, .CrossRefGoogle Scholar
Bullock, M. A. and Grinspoon, D. H. 1996. ‘The stability of climate on Venus’, J. Geophys. Res., 101: 7521–7530.CrossRefGoogle Scholar
Bullock, M. A. and Grinspoon, D. H. 2001. ‘The recent evolution of climate on Venus’, Icarus 150: 19–37.CrossRefGoogle Scholar
Taylor, F. W. and Grinspoon, D. H. 2009. ‘Climate evolution of Venus’, Journal of Geophysical Research 114, E00B40, .CrossRefGoogle Scholar
Planetary Atmospheres, Oxford University Press, 2010
Elementary Climate Physics, Oxford University Press, 2005.
Cockell, C. S. 1999: Life on Venus. Planetary and Space Science 47, 12, 1487–1501.CrossRefGoogle Scholar
Grinspoon, David H. and Bullock, Mark A. 2007. ‘Astrobiology and Venus exploration’ in Exploring Venus as a Terrestrial Planet, ed. Esposito, L. W., Stofan, E. R. and Cravens, T. E., AGU Geophysical Monographs, Vol. 176.CrossRefGoogle Scholar
Schulze-Makuch, D. and Irwin, L. N. 2002. ‘Reassessing the possibility of life on Venus: Proposal for an Astrobiology Mission’, Astrobiology 2/2: 197–202.CrossRefGoogle ScholarPubMed

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