Small-scale composition and haze layering in Titan's polar vortex
Icarus 204:2 (2009) 645-657
Abstract:
Fine scale layering of haze and composition in Titan's stratosphere and mesosphere was investigated using visible/UV images from Cassini's Imaging Science Sub-system (ISS) and IR spectra from Cassini's Composite Infra-Red Spectrometer (CIRS). Both ISS and CIRS independently show fine layered structures in haze and composition, respectively, in the 150-450 km altitude range with a preferred vertical wavelength of around 50 km. Layers are most pronounced around the north polar winter vortex, although some weaker layers do exist at more southerly latitudes. The amplitude of composition layers in each trace gas profile is proportional to the relative enrichment of that species in the winter polar vortex compared to equatorial latitudes. As enrichment is caused by polar subsidence, this suggests a dynamical origin. We propose that the polar layers are caused by cross-latitude advection across the vortex boundary. This is analogous to processes that lead to ozone laminae formation around Earth's polar vortices. 漏 2009 Elsevier Inc. All rights reserved.Sensitivity of stable water isotopic values to convective parameterization schemes
Geophysical Research Letters American Geophysical Union (AGU) 36:23 (2009)
Titan's prolific propane: The Cassini CIRS perspective
Planetary and Space Science 57:13 (2009) 1573-1585
Abstract:
Although propane gas (CGlobal warming, convective threshold and false thermostats
Geophysical Research Letters American Geophysical Union (AGU) 36:21 (2009)
Titan's Prolific Propane: The Cassini CIRS Perspective
(2009)