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Atmospheric Chemistry Experiment (ACE): Mission overview

Geophysical Research Letters · 2005 · Vol. 32(15)
P. F. BernathC. T. McElroyM. C. AbramsC. D. BooneM. L. ButlerC. Camy‐PeyretM. CarleerC. ClerbauxPierre‐François CoheurR. ColinPhil DeColaMartine DeMaziereJ. R. DrummondDenis DufourW. F. J. EvansH. FastD. FussenK. L. GilbertD. E. JenningsE. J. LlewellynR. P. LoweEmmanuel MahieuJ. C. McConnellM. J. McHughSean D. McLeodRẽjean MichaudC. MidwinterRay NassarF. NichitiuCaroline R. NowlanC. P. RinslandYves RochonNeil RowlandsK. SemeniukPierre SimonR. SkeltonJ. J. SloanM. SoucyKimberly StrongP. TremblayD. N. TurnbullKaley A. WalkerI. WalktyDavid A. WardleV. A. WehrleR. ZanderJ. Zou

Abstract

SCISAT‐1, also known as the Atmospheric Chemistry Experiment (ACE), is a Canadian satellite mission for remote sensing of the Earth's atmosphere. It was launched into low Earth circular orbit (altitude 650 km, inclination 74°) on 12 Aug. 2003. The primary ACE instrument is a high spectral resolution (0.02 cm −1 ) Fourier Transform Spectrometer (FTS) operating from 2.2 to 13.3 μm (750–4400 cm −1 ). The satellite also features a dual spectrophotometer known as MAESTRO with wavelength coverage of 285–1030 nm and spectral resolution of 1–2 nm. A pair of filtered CMOS detector arrays records images of the Sun at 0.525 and 1.02 μm. Working primarily in solar occultation, the satellite provides altitude profile information (typically 10–100 km) for temperature, pressure, and the volume mixing ratios for several dozen molecules of atmospheric interest, as well as atmospheric extinction profiles over the latitudes 85°N to 85°S. This paper presents a mission overview and some of the first scientific results.

Atmospheric Ozone and ClimateSpectroscopy and Laser ApplicationsAtmospheric chemistry and aerosolsOccultationSatelliteRemote sensingSpectral resolutionAtmosphere (unit)Atmospheric chemistryAltitude (triangle)SpectrometerEnvironmental scienceMixing ratio

Funding

  • National Aeronautics and Space Administration
  • Canadian Foundation for Climate and Atmospheric Sciences
  • Natural Sciences and Engineering Research Council of Canada
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References
NRLMSISE‐00 empirical model of the atmosphere: Statistical comparisons and scientific issues
Journal of Geophysical Research Atmospheres · 2002 · 3,702 citations
The Global Ozone Monitoring Experiment (GOME): Mission Concept and First Scientific Results
Journal of the Atmospheric Sciences · 1999 · 1,528 citations
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