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Greenblatt et al. 2002
Greenblatt, J.B., Jost, H., Loewenstein, M., Podolske, J.R., Bui, T.P., Hurst, D.F., Elkins, J.W., Herman, R.L., Webster, C.R., Schauffler, S.M., Atlas, E.L., Newman, P.A., Lait, L.R., Müller, M., Engel, A. and Schmidt, U. (2002). Defining the polar vortex edge from an N2O:potential temperature correlation. Journal of Geophysical Research 107: doi: 10.1029/2001JD000575. issn: 0148-0227.

A prerequisite to studying phenomena in the winter stratospheric polar vortex is the separation of measurements inside and outside the dynamical barrier of the vortex edge. We describe a technique to accurately determine the inner edge of the vortex boundary region from measurements of potential temperature and a trace gas, such as N2O, and apply it to in situ aircraft and balloon measurements from the SOLVE/THESEO 2000 Arctic campaign. The method may be used to refine the Nash algorithm, which, due to the inherently coarser resolution of potential vorticity on which it is dependent, may misidentify the inner edge by more than 400 km and omit the identification of small, extravortex filaments within the vortex.

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Abstract

Keywords
Meteorology and Atmospheric Dynamics, Middle atmosphere dynamics (0341, 0342), Atmospheric Composition and Structure, Middle atmosphere--constituent transport and chemistry
Journal
Journal of Geophysical Research
http://www.agu.org/journals/jb/
Publisher
American Geophysical Union
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