HR: 0830h
AN: A41D-0708 [PDF]
TI: Improved SAGE II Water Vapor Inversion
AU: * Burton, S P
EM: s.p.burton@larc.nasa.gov
AF: Science Applications International Corporation, One Enterprise Parkway
Suite 300, Hampton, VA 23666 United States
AU: Thomason, L W
AF: NASA Langley Research Center, Mail Stop 475, Hampton, VA 23681-2199 United States
AU: Chiou, E
AF: Science Applications International Corporation, One Enterprise Parkway
Suite 300, Hampton, VA 23666 United States
AB:
Archived versions of SAGE~II water vapor data exhibit some
problems, including strong sensitivity to enhanced aerosol
and seasonal variability unlike other stratospheric data
sets as well as an apparent dry bias near the hygropause. A
modification to the water vapor inversion technique has been
developed which addresses these problems. Water vapor is
measured with the SAGE~II instrument using a single
filter-based channel, nominally at 935~nm. It is
hypothesized that the spectral response of the filter
underwent a significant change in the first few years after
launch, broadening and shifting to longer wavelengths. This
is in accordance with evidence that the physically similar
${\mathrm{NO_{2}}}$ channel, nominally at 448~nm, also
underwent a change in wavelength after launch. The
${\mathrm{NO_{2}}}$ retrieval was reworked and resulted in
significant improvement in ${\mathrm{NO_{2}}}$ in version
6.1. A similar change in the water vapor channel would
affect the apparent strength of the water vapor feature as
well as the contributions of other components such as
molecular and aerosol scattering. It was found that a
single constant filter adjustment is adequate to yield
reasonable agreement with a water vapor climatology from
HALOE for the period of 1986 through the present except
immediately following the Pinatubo eruption when aerosol
interference remains a problem. Better agreement is
obtained by allowing slightly different aerosol clearing
models for the post-El Chichon period and the post-Pinatubo
period. Water vapor data in this newest version show marked
improvement over earlier versions.
DE: 0340 Middle atmosphere--composition and chemistry
DE: 0370 Volcanic effects (8409)
DE: 0394 Instruments and techniques
SC: Atmospheric Sciences [A]
MN: 2003 Fall Meeting