Articles | Volume 11, issue 9
https://doi.org/10.5194/acp-11-4149-2011
https://doi.org/10.5194/acp-11-4149-2011
Research article
 | 
05 May 2011
Research article |  | 05 May 2011

Aura MLS observations of the westward-propagating s=1, 16-day planetary wave in the stratosphere, mesosphere and lower thermosphere

K. A. Day, R. E. Hibbins, and N. J. Mitchell

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Subject: Dynamics | Research Activity: Remote Sensing | Altitude Range: Mesosphere | Science Focus: Physics (physical properties and processes)
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Cited articles

Alexander, S. P. and Shepherd, M. G.: Planetary wave activity in the polar lower stratosphere, Atmos. Chem. Phys., 10, 707–718, https://doi.org/10.5194/acp-10-707-2010, 2010.
Baldwin, M., Hirooka, T., O'Neill, T., and Yoden, S.: Major stratospheric warming in the Southern Hemisphere in 2002: Dynamical aspects of the ozone hole split, SPARC Newsletter, 20, 24–26, 2003.
Baumgaertner, A. J. G., McDonald, A. J., Hibbins, R. E., Fritts, D. C., Murphy, D. J., and Vincent, R. A.: Short-period planetary waves in the antartic middle atmosphere, J. Atmos. and Solar-Terr. Phys., 70, 1336–1350, 2008.
Charney, J. G. and Drazin, P. G.: Propagation of planetary-scale disturbances from lower into the upper atmosphere, J. Geophys. Res., 66, 83–109, 1961.
Chshyolkova, T., Manson, A. H., Meek, C. E., Avery, S. K., Thorsen, D., MacDougall, J. W., Hocking, W., Murayama, Y., and Igarashi, K.: Planetary wave coupling processes in the middle atmosphere (30–90km): A study involving MetO and MFR data, J. Atmos. and Solar-Terr. Phys., 68, 353–368, 2006.
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