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From:Atmospheric Measurement Techniques (Vol. 12, Issue 5) Peer-Reviewed
Within the framework of the second SPARC (Stratosphere-troposphere Processes And their Role in Climate) water vapour assessment (WAVAS-II), profile-to-profile comparisons of stratospheric and lower mesospheric water...
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From:Atmospheric Measurement Techniques (Vol. 10, Issue 3) Peer-ReviewedIn the framework of the second SPARC (Stratosphere-troposphere Processes And their Role in Climate) water vapour assessment (WAVAS-II), the amplitudes and phases of the annual, semi-annual and quasi-biennial variation...
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From:Atmospheric Chemistry and Physics (Vol. 16, Issue 11) Peer-ReviewedWe have analysed MIPAS (Michelson Interferometer for Passive Atmopheric Sounding) infrared measurements of PMCs for the summer seasons in the Northern (NH) and Southern (SH) hemispheres from 2005 to 2012. Measurements...
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From:Atmospheric Chemistry and Physics (Vol. 18, Issue 9) Peer-ReviewedStratospheric transport in global circulation models and chemistry-climate models is an important component in simulating the recovery of the ozone layer as well as changes in the climate system. The Brewer-Dobson...
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From:Atmospheric Measurement Techniques (Vol. 10, Issue 7) Peer-Reviewed
MIPAS IMK/IAA carbon tetrachloride (CCl.sub.4) retrieval and first comparison with other instruments
MIPAS thermal limb emission measurements were used to derive vertically resolved profiles of carbon tetrachloride (CCl.sub.4). Level-1b data versions MIPAS/5.02 to MIPAS/5.06 were converted into volume mixing ratio... -
From:Atmospheric Measurement Techniques (Vol. 13, Issue 7) Peer-ReviewedA ground-based, high-spectral-resolution Fourier transform infrared (FTIR) spectrometer has been operational in Addis Ababa, Ethiopia (9.01.sup." N latitude, 38.76.sup." E longitude; 2443 m...
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From:Atmospheric Chemistry and Physics (Vol. 18, Issue 11) Peer-ReviewedTrend estimates with different signs are reported in the literature for lower stratospheric water vapour considering the time period between the late 1980s and 2010. The NOAA (National Oceanic and Atmospheric...
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From:Atmospheric Chemistry and Physics (Vol. 17, Issue 18) Peer-ReviewedIn response to global warming, the Brewer--Dobson circulation in the stratosphere is expected to accelerate and the mean transport time of air along this circulation to decrease. This would imply a negative...
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From:Atmospheric Measurement Techniques (Vol. 14, Issue 6) Peer-ReviewedA new global set of atmospheric temperature profiles is retrieved from recalibrated radiance spectra recorded with the Michelson Interferometer for Passive Atmospheric Sounding (MIPAS). Changes with respect to previous...
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From:Atmospheric Chemistry and Physics (Vol. 21, Issue 9) Peer-ReviewedIn this paper, we present the MErged GRIdded Dataset of Ozone Profiles (MEGRIDOP) in the stratosphere with a resolved longitudinal structure, which is derived from data from six limb and occultation satellite...
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From:Atmospheric Measurement Techniques (Vol. 11, Issue 8) Peer-Reviewed
Discrepancies in ozone retrievals in MIPAS channels A (685-970 cm.sup.-1) and AB (1020-1170 cm.sup.-1) have been a long-standing problem in MIPAS data analysis, amounting to an interchannel bias (AB-A)...
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From:Atmospheric Chemistry and Physics (Vol. 19, Issue 4) Peer-Reviewed
Within the framework of the second SPARC (Stratosphere-troposphere Processes And their Role in Climate) water vapour assessment (WAVAS-II), we evaluated five data sets of [delta]D(H.sub.2 O) obtained from...
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From:Atmospheric Chemistry and Physics (Vol. 19, Issue 9) Peer-Reviewed
We have performed backward trajectory calculations and simulations with the three-dimensional Chemical Lagrangian Model of the Stratosphere (CLaMS) for two succeeding monsoon seasons using artificial tracers of air...
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From:Atmospheric Chemistry and Physics (Vol. 21, Issue 11) Peer-ReviewedMeasurements of long-lived trace gases (SF.sub.6, CFC-11, CFC-12, HCFC-22, CCl.sub.4, N.sub.2 O, CH.sub.4, H.sub.2 O, and CO) performed with the Michelson Interferometer for Passive Atmospheric Sounding (MIPAS) have been...
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From:Atmospheric Chemistry and Physics (Vol. 16, Issue 13) Peer-ReviewedThe MIPAS Fourier transform spectrometer on board Envisat has measured global distributions of the six principal reactive nitrogen (NO.sub.y) compounds (HNO.sub.3, NO.sub.2, NO, N.sub.2 O.sub.5, ClONO.sub.2, and...
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From:Atmospheric Chemistry and Physics (Vol. 17, Issue 5) Peer-ReviewedWe compare simulations from three high-top (with upper lid above 120 km) and five medium-top (with upper lid around 80 km) atmospheric models with observations of odd nitrogen (NO.sub.x = NO + NO.sub.2 ), temperature,...
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From:Atmospheric Measurement Techniques (Vol. 11, Issue 7) Peer-Reviewed
Time series of stratospheric and lower mesospheric water vapour using 33 data sets from 15 different satellite instruments were compared in the framework of the second SPARC (Stratosphere-troposphere Processes And...
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From:Atmospheric Measurement Techniques (Vol. 9, Issue 12) Peer-ReviewedGlobal distributions of the CO.sub.2 â¯vmr (volume mixing ratio) in the mesosphere and lower thermosphere (from 70 up to...
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From:Atmospheric Chemistry and Physics (Vol. 16, Issue 23) Peer-ReviewedGlobal simulations with the Chemical Lagrangian Model of the Stratosphere (CLaMS) using artificial tracers of air mass origin are used to analyze transport mechanisms from the Asian monsoon region into the lower...