OSIRIS: A Decade of Scattered LightSource: Bulletin of the American Meteorological Society:;2012:;volume( 093 ):;issue: 012::page 1845Author:McLinden, C. A.
,
Bourassa, A. E.
,
Brohede, S.
,
Cooper, M.
,
Degenstein, D. A.
,
Evans, W. J. F.
,
Gattinger, R. L.
,
Haley, C. S.
,
Llewellyn, E. J.
,
Lloyd, N. D.
,
Loewen, P.
,
Martin, R. V.
,
McConnell, J. C.
,
McDade, I. C.
,
Murtagh, D.
,
Rieger, L.
,
von Savigny, C.
,
Sheese, P. E.
,
Sioris, C. E.
,
Solheim, B.
,
Strong, K.
DOI: 10.1175/BAMS-D-11-00135.1Publisher: American Meteorological Society
Abstract: ruary 2001, a converted Russian ICBM delivered Odin, a small Swedish satellite, into low Earth orbit. One of the sensors onboard is a small Canadian spectrometer called OSIRIS. By measuring scattered sunlight from Earth's horizon, or limb, OSIRIS is able to deduce the abundance of trace gases and particles from the upper troposphere into the lower thermosphere. Designed and built on a modest budget, OSIRIS has exceeded not only its 2-yr lifetime but also all expectations. With more than a decade of continuous data, OSIRIS has recorded over 1.8 million limb scans. The complexities associated with unraveling scattered light in order to convert OSIRIS spectra into highquality geophysical profiles have forced the OSIRIS team to develop leading-edge algorithms and computer models. These profiles are being used to help address many science questions, including the coupling of atmospheric regions (e.g., stratosphere?troposphere exchange) and the budgets and trends in ozone, nitrogen, bromine, and other species. One specific example is the distribution and abundance of upper-tropospheric, lightning-produced reactive nitrogen and ozone. Arguably OSIRIS's most important contributions come from its aerosol measurements, including detection and characterization of subvisual cirrus and polar stratospheric and mesospheric clouds. OSIRIS also provides a unique view of the stratospheric aerosol layer, and it is able to identify and track perturbations from volcanic activity and biomass burning.
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| contributor author | McLinden, C. A. | |
| contributor author | Bourassa, A. E. | |
| contributor author | Brohede, S. | |
| contributor author | Cooper, M. | |
| contributor author | Degenstein, D. A. | |
| contributor author | Evans, W. J. F. | |
| contributor author | Gattinger, R. L. | |
| contributor author | Haley, C. S. | |
| contributor author | Llewellyn, E. J. | |
| contributor author | Lloyd, N. D. | |
| contributor author | Loewen, P. | |
| contributor author | Martin, R. V. | |
| contributor author | McConnell, J. C. | |
| contributor author | McDade, I. C. | |
| contributor author | Murtagh, D. | |
| contributor author | Rieger, L. | |
| contributor author | von Savigny, C. | |
| contributor author | Sheese, P. E. | |
| contributor author | Sioris, C. E. | |
| contributor author | Solheim, B. | |
| contributor author | Strong, K. | |
| date accessioned | 2017-06-09T16:44:00Z | |
| date available | 2017-06-09T16:44:00Z | |
| date copyright | 2012/12/01 | |
| date issued | 2012 | |
| identifier issn | 0003-0007 | |
| identifier other | ams-73171.pdf | |
| identifier uri | http://onlinelibrary.yabesh.ir/handle/yetl/4215255 | |
| description abstract | ruary 2001, a converted Russian ICBM delivered Odin, a small Swedish satellite, into low Earth orbit. One of the sensors onboard is a small Canadian spectrometer called OSIRIS. By measuring scattered sunlight from Earth's horizon, or limb, OSIRIS is able to deduce the abundance of trace gases and particles from the upper troposphere into the lower thermosphere. Designed and built on a modest budget, OSIRIS has exceeded not only its 2-yr lifetime but also all expectations. With more than a decade of continuous data, OSIRIS has recorded over 1.8 million limb scans. The complexities associated with unraveling scattered light in order to convert OSIRIS spectra into highquality geophysical profiles have forced the OSIRIS team to develop leading-edge algorithms and computer models. These profiles are being used to help address many science questions, including the coupling of atmospheric regions (e.g., stratosphere?troposphere exchange) and the budgets and trends in ozone, nitrogen, bromine, and other species. One specific example is the distribution and abundance of upper-tropospheric, lightning-produced reactive nitrogen and ozone. Arguably OSIRIS's most important contributions come from its aerosol measurements, including detection and characterization of subvisual cirrus and polar stratospheric and mesospheric clouds. OSIRIS also provides a unique view of the stratospheric aerosol layer, and it is able to identify and track perturbations from volcanic activity and biomass burning. | |
| publisher | American Meteorological Society | |
| title | OSIRIS: A Decade of Scattered Light | |
| type | Journal Paper | |
| journal volume | 93 | |
| journal issue | 12 | |
| journal title | Bulletin of the American Meteorological Society | |
| identifier doi | 10.1175/BAMS-D-11-00135.1 | |
| journal fristpage | 1845 | |
| journal lastpage | 1863 | |
| tree | Bulletin of the American Meteorological Society:;2012:;volume( 093 ):;issue: 012 | |
| contenttype | Fulltext |