Introduction: Like Earth, Mars possesses dynamical atmospheric features known as polar vortices. These are regions of cold, isolated polar air surrounded by powerful westerly wind jets which can create barriers to transport of atmospheric dust, water, and chemical species. They have a complex and asymmetrical (north/south) relationship with atmospheric dust loading [1]. Regional and global dust events have been shown to cause rapid vortex displacement [2,3] in the northern vortex, while the southern vortex appears more robust. Unlike Earth, Mars also experiences planet-encircling Global Dust Storms: spectacular, planet-spanning events which dramatically increase atmospheric dust loading. The most recent such event in 2018 (beginning at...
As on Earth, between late autumn and early spring on Mars middle and high latitudes within its atmos...
We investigate the triggering mechanism of a cross-equatorial dust storm observed by Mars Global Sur...
Abstract NASA's InSight landed in Elysium Planitia (~4.5°N,136°E) at Ls ~ 296° (November 2018), righ...
Mars possesses dynamical features called polar vortices: regions of cold, isolated air over the pole...
Like Earth, Mars has dynamical atmospheric features known as polar vortices. These are regions of co...
Mars’ polar vortices play key roles in the planet’s general circulation and atmospheric transport. T...
Like Earth, Mars has polar vortices: regions of cold air above the winter pole, circumscribed by pow...
Mars' dust cycle and the radiative-dynamical impacts of atmospheric dust were investigated by assimi...
This is the final version. Available on open access from IOP Publishing via the DOI in this recordDa...
From late-autumn through early-spring, the middle- and high-latitudes of both hemispheres of Mars an...
The influence of atmospheric dust on the dynamics and stability of the martian polar vortices is exa...
Super-rotation affects—and is affected by—the distribution of dust in the martian atmosphere. We mod...
Mars’ winter atmosphere is characterised by a polar vortex of low temperatures around the winter pol...
As does Earth, Mars presents pronounced global atmospheric circulation patterns. Solar differential ...
Polar vortices on Mars provide case-studies to aid understanding of geophysical vortex dynamics and ...
As on Earth, between late autumn and early spring on Mars middle and high latitudes within its atmos...
We investigate the triggering mechanism of a cross-equatorial dust storm observed by Mars Global Sur...
Abstract NASA's InSight landed in Elysium Planitia (~4.5°N,136°E) at Ls ~ 296° (November 2018), righ...
Mars possesses dynamical features called polar vortices: regions of cold, isolated air over the pole...
Like Earth, Mars has dynamical atmospheric features known as polar vortices. These are regions of co...
Mars’ polar vortices play key roles in the planet’s general circulation and atmospheric transport. T...
Like Earth, Mars has polar vortices: regions of cold air above the winter pole, circumscribed by pow...
Mars' dust cycle and the radiative-dynamical impacts of atmospheric dust were investigated by assimi...
This is the final version. Available on open access from IOP Publishing via the DOI in this recordDa...
From late-autumn through early-spring, the middle- and high-latitudes of both hemispheres of Mars an...
The influence of atmospheric dust on the dynamics and stability of the martian polar vortices is exa...
Super-rotation affects—and is affected by—the distribution of dust in the martian atmosphere. We mod...
Mars’ winter atmosphere is characterised by a polar vortex of low temperatures around the winter pol...
As does Earth, Mars presents pronounced global atmospheric circulation patterns. Solar differential ...
Polar vortices on Mars provide case-studies to aid understanding of geophysical vortex dynamics and ...
As on Earth, between late autumn and early spring on Mars middle and high latitudes within its atmos...
We investigate the triggering mechanism of a cross-equatorial dust storm observed by Mars Global Sur...
Abstract NASA's InSight landed in Elysium Planitia (~4.5°N,136°E) at Ls ~ 296° (November 2018), righ...