Radio scintillations in Pioneer Venus radio Occultation data are simulated assuming that the index of refraction fluctuations in Venus's atmosphere responsible for the scintillations are directly caused by gravity wave fluctuations. The gravity waves are created by a global convection layer between 50- and 55-km attitude in Venus's atmosphere and propagate vertically. The authors compare the simulated scintillations with data from Pioneer Venus. These gravity waves can explain the spectral shape and amplitude of the radio scintilations. The shape at high frequencies is controlled by wave breaking, which yields a saturated spectrum. The amplitude is subject to parameters such as the intensity of the convection, the angle between the zona...
The impact of the cloud convective layer of the atmosphere of Venus on the global circulation remain...
International audienceBased on the analysis of UV images (at 365 nm) of Venus cloud top (altitude 67...
A 2-D spectral full-wave model is described that simulates the generation and propagation of mountai...
Radio scintillations in Pioneer Venus radio Occultation data are simulated assuming that the index o...
NOTE: Text or symbols not renderable in plain ASCII are indicated by [...]. Abstract is included in ...
The characteristics of gravity wave packets in the Venusian atmosphere were studied using high-verti...
The emission of internal gravity waves from a layer of dry convection embedded within a stable atmos...
The Venus Express Radio Science Experiment VeRa retrieves atmospheric profiles in the mesosphere and...
Gravity waves are observed in Venus atmosphere, but their characteristics are not well-known. Here, ...
International audienceA new simulation of Venus atmospheric circulation obtained with the LMD Venus ...
Plain Language Summary Temperature profiles of the Venus atmosphere obtained by the Akatsuki radio o...
A two-dimensional, fully nonlinear, nonhydrostatic, gravity wave model is used to study the evolutio...
The complexity of Venus upper atmospheric circulation is still being investigated. Simulations of Ve...
International audienceThe imaging capabilities of the Visible and Infrared Thermal Imaging Spectrome...
The impact of the cloud convective layer of the atmosphere of Venus on the global circulation remain...
International audienceBased on the analysis of UV images (at 365 nm) of Venus cloud top (altitude 67...
A 2-D spectral full-wave model is described that simulates the generation and propagation of mountai...
Radio scintillations in Pioneer Venus radio Occultation data are simulated assuming that the index o...
NOTE: Text or symbols not renderable in plain ASCII are indicated by [...]. Abstract is included in ...
The characteristics of gravity wave packets in the Venusian atmosphere were studied using high-verti...
The emission of internal gravity waves from a layer of dry convection embedded within a stable atmos...
The Venus Express Radio Science Experiment VeRa retrieves atmospheric profiles in the mesosphere and...
Gravity waves are observed in Venus atmosphere, but their characteristics are not well-known. Here, ...
International audienceA new simulation of Venus atmospheric circulation obtained with the LMD Venus ...
Plain Language Summary Temperature profiles of the Venus atmosphere obtained by the Akatsuki radio o...
A two-dimensional, fully nonlinear, nonhydrostatic, gravity wave model is used to study the evolutio...
The complexity of Venus upper atmospheric circulation is still being investigated. Simulations of Ve...
International audienceThe imaging capabilities of the Visible and Infrared Thermal Imaging Spectrome...
The impact of the cloud convective layer of the atmosphere of Venus on the global circulation remain...
International audienceBased on the analysis of UV images (at 365 nm) of Venus cloud top (altitude 67...
A 2-D spectral full-wave model is described that simulates the generation and propagation of mountai...