First results on daytime mesopause OH rotational temperatures using ground-based photometry from equatorial latitudes

dc.contributor.authorSridharan, R.en_US
dc.contributor.authorTaori, Aloken_US
dc.contributor.authorGurubaran, S.en_US
dc.contributor.authorRajaram, R.en_US
dc.contributor.authorShepherd, M. G.en_US
dc.date.accessioned2026-07-24T06:35:31Z
dc.date.issued1999
dc.description.abstractDaytime mesospheric OH and rotational temperatures were estimated from the measurements of the relative intensities of the rotational lines in the same vibrational band, using the unique multiwavelength daytime photometer, from Tirunelveli (8.7°N; 77.8°E; 0.5°N dip latitude), an equatorial station in the Indian zone. On a couple of days when simultaneous measurements were available in the vicinity of the experimental site, the estimated temperatures compared well with those measured by the Wind Imaging Interferometer (WINDII) onboard the Upper Atmosphere Research Satellite (UARS). These results, the first of their kind, revealed: (1) large day-to-day variabilities; (2) oscillatory features with periodicities ranging from 0.5 to 6 h; and (3) large deviations of ±30–50 K, on occasions, from the MSIS-90 model temperatures. Comparisons have also been made with simultaneous measurements of neutral winds around mesopause altitudes using the Partial Reflection radar from the same site to look for any possible association of neutral dynamical parameters with the mesopause temperature variabilities. These results are presented and discussed.en_US
dc.identifier.citationJournal of Atmospheric and Solar-Terrestrial Physics, v.61, p.1131-1142, 1999, doi:10.1016/S1364-6826(99)00062-0en_US
dc.identifier.other90575
dc.identifier.urihttps://repository.iigm.res.in/handle/123456789/2010
dc.languageenen_US
dc.subjectPartial reflection radaren_US
dc.subjectUpper Atmosphere Research Satellite (UARS)en_US
dc.subjectWind Imaging Interferometer (WINDII)en_US
dc.subjectEquatorial latitudesen_US
dc.titleFirst results on daytime mesopause OH rotational temperatures using ground-based photometry from equatorial latitudesen_US
dc.typeArticleen_US

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