Siege in the Southern Stratosphere: Hunga Tonga‐Hunga Ha'apai Water Vapor Excluded From the 2022 Antarctic Polar Vortex

Author:

Manney Gloria L.12ORCID,Santee Michelle L.3ORCID,Lambert Alyn3ORCID,Millán Luis F.3ORCID,Minschwaner Ken2,Werner Frank3ORCID,Lawrence Zachary D.45ORCID,Read William G.3,Livesey Nathaniel J.3ORCID,Wang Tao3ORCID

Affiliation:

1. NorthWest Research Associates Socorro NM USA

2. New Mexico Institute of Mining and Technology Socorro NM USA

3. Jet Propulsion Laboratory California Institute of Technology Pasadena CA USA

4. Cooperative Institute for Research in Environmental Sciences (CIRES) & NOAA Physical Sciences Laboratory (PSL) University of Colorado Boulder CO USA

5. NorthWest Research Associates Boulder CO USA

Abstract

AbstractWe use Aura Microwave Limb Sounder (MLS) trace gas measurements to investigate whether water vapor (H2O) injected into the stratosphere by the Hunga Tonga‐Hunga Ha'apai (HTHH) eruption affected the 2022 Antarctic stratospheric vortex. Other MLS‐measured long‐lived species are used to distinguish high HTHH H2O from that descending in the vortex from the upper‐stratospheric H2O peak. HTHH H2O reached high southern latitudes in June–July but was effectively excluded from the vortex by the strong transport barrier at its edge. MLS H2O, nitric acid, chlorine species, and ozone within the 2022 Antarctic polar vortex were near average; the vortex was large, strong, and long‐lived, but not exceptionally so. There is thus no clear evidence of HTHH influence on the 2022 Antarctic vortex or its composition. Substantial impacts on the stratospheric polar vortices are expected in succeeding years since the H2O injected by HTHH has spread globally.

Funder

Jet Propulsion Laboratory

Publisher

American Geophysical Union (AGU)

Subject

General Earth and Planetary Sciences,Geophysics

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