Catherine Debergh
PSL Research University
5 Papers
124 Citations
Catherine Debergh is an academic researcher from PSL Research University. The author has contributed to research in topics: Venus & Atmosphere of Venus. The author has an hindex of 3, co-authored 5 publications.
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Papers
Deuterium on Venus: Observations from Earth
Barry L. Lutz,Catherine Debergh,Bruno Bézard,T. C. Owen,David Crisp,Jean-Pierre Maillard +5 more
- 01 Oct 1991
TL;DR: The resulting value of the deuterium-to-hydrogen ratio (D/H) is 120 � 40 times the telluric ratio, providing unequivocal confirmation of in situ Pioneer Venus mass spectrometer measurements that were in apparent conflict with an upper limit set from International Ultraviolet Explorer spectra.
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Near-infrared oxygen airglow from the Venus nightside
David Crisp,Vikki Meadows,D. A. Allen,Bruno Bézard,Catherine Debergh,Jean-Pierre Maillard +5 more
- 01 Jan 1992
TL;DR: In this paper, ground-based imaging and spectroscopic observations of Venus reveal intense near-infrared oxygen airglow emission from the upper atmosphere and provide new constraints on the oxygen photochemistry and dynamics near the mesopause (approximately 100 km).
A possible deuterium anomaly: Implications of the CH3D/CH4 mixing ratios in the atmospheres of Jupiter, Saturn, and Uranus
Barry L. Lutz,Catherine Debergh,Tobias Owen +2 more
- 01 Oct 1986
TL;DR: In this paper, a comparison of CH3D/CH4 mixing ratios made for Saturn and Uranus is presented and intercompared with current values of Jupiter, illustrating large differences between the planets.
Temperature of nitrogen ice on Pluto and its implications for flux measurements.
Kimberly A. Tryka,Robert H. Brown,Dale P. Cruikshank,Tobias Owen,Thomas R. Geballe,Catherine Debergh +5 more
TL;DR: The profile of the 2.148-micrometers band of solid nitrogen can be used as a "thermometer" and it is determined that the temperature of the N2 ice on that body is 40 +/- 2 K and a nonisothermal flux model of the Pluto-Charon system is created.
Near-infrared light from Venus' nightside - A spectroscopic analysis
James B. Pollack,J. Brad Dalton,David H. Grinspoon,R. B. Wattson,Richard S. Freedman,David Crisp,D. Allen,Bruno Bézard,Catherine Debergh,Lawrence P. Giver,Q. Ma,Richard Tipping +11 more
TL;DR: In this paper, the near-IR spectra of the Venus night-side emission are simulated by means of a radiative transfer code that allows for emission, absorption, and scattering by atmospheric gases and particles.