activity
20192022
most citedAn axisymmetric limit for the width of the Hadley cell on planets with large obliquity and long seasonality

24 citations · 40 across the 4 of their papers we have counts for

collaborators

6 papers

physics.ao-ph20229 cited

The Key Factors Controlling the Seasonality of Planetary Climate

Ilai Guendelman, Yohai Kaspi

Several different factors influence the seasonal cycle of a planet. This study uses a general circulation model and an energy balance model (EBM) to assess the parameters that gove…

astro-ph.EP2022

Dynamical regimes of polar vortices on terrestrial planets with a seasonal cycle

Ilai Guendelman, Darryn W. Waugh, Yohai Kaspi

Polar vortices are common planetary flows that encircle the pole in the middle or high latitudes, and are observed on most of the solar systems' planetary atmospheres. The polar vo…

astro-ph.EP20217 cited

The emergence of a summer hemisphere jet in planetary atmospheres

Ilai Guendelman, Darryn W. Waugh, Yohai Kaspi

Zonal jets are common in planetary atmospheres. Their character, structure, and seasonal variability depend on the planetary parameters. During solstice on Earth and Mars, there is…

astro-ph.EP2020

Atmospheric dynamics on terrestrial planets with eccentric orbits

Ilai Guendelman, Yohai Kaspi

The insolation a planet receives from its parent star is the main driver of the climate and depends on the planet's orbital configuration. Planets with non-zero obliquity and eccen…

astro-ph.EP2019

Atmospheric Dynamics on Terrestrial Planets: The Seasonal Response to changes in Orbital, Rotational and Radiative Timescales

Ilai Guendelman, Yohai Kaspi

Thousands of exoplanets have been detected to date, and with future planned missions this tally will increase. Understanding the climate dependence on the planetary parameters is v…

astro-ph.EP201924 cited

An axisymmetric limit for the width of the Hadley cell on planets with large obliquity and long seasonality

Ilai Guendelman, Yohai Kaspi

Hadley cells dominate the meridional circulation of terrestrial atmospheres. The Solar System terrestrial atmospheres, Venus, Earth, Mars and Titan, exhibit a large variety in the…