International audienceThe APSIS reactor has been designed to simulate in the laboratory with a VUV synchrotron irradiation the photochemistry occurring in planetary upper atmospheres. A N2-CH4 Titan-like gas mixture has been studied, whose photochemistry in Titan's ionospheric irradiation conditions leads to a coupled chemical network involving both radicals and ions. In the present work, an ion-neutral coupled model is developed to interpret the experimental data, taking into account the uncertainties on the kinetic parameters by Monte Carlo sampling. The model predicts species concentrations in agreement with mass spectrometry measurements of the methane consumption and product blocks intensities. Ion chemistry and in particular dissociat...
International audienceTitan, the largest moon of Saturn, has a dense atmosphere whose upper layers a...
International audienceWe present a one-dimensional coupled ion-neutral photochemical kinetics and di...
International audienceTitan is the largest satellite of Saturn. It has a dense atmosphere of 1.5 bar...
International audienceThe APSIS reactor has been designed to simulate in the laboratory with a VUV s...
AbstractThe APSIS reactor has been designed to simulate in the laboratory with a VUV synchrotron irr...
A new reactor, named APSIS (Atmospheric Photochemistry SImulated by Synchrotron), has been designed ...
International audienceA new reactor, named APSIS for Atmospheric Photochemistry SImulated by Synchro...
Titan's VUV photochemistry is studied by laboratory simulation and numerical modeling.In the laborat...
Part of the special section “Chemistry: Titan Atmosphere”International audienceExperimental simulati...
International audienceTitan's upper atmosphere produces an ionosphere at high altitudes from photoio...
Many models with different characteristics have been published so far to study the chemical processe...
International audienceTitan, the largest moon of Saturn, has a dense atmosphere whose upper layers a...
International audienceWe present a one-dimensional coupled ion-neutral photochemical kinetics and di...
International audienceTitan is the largest satellite of Saturn. It has a dense atmosphere of 1.5 bar...
International audienceThe APSIS reactor has been designed to simulate in the laboratory with a VUV s...
AbstractThe APSIS reactor has been designed to simulate in the laboratory with a VUV synchrotron irr...
A new reactor, named APSIS (Atmospheric Photochemistry SImulated by Synchrotron), has been designed ...
International audienceA new reactor, named APSIS for Atmospheric Photochemistry SImulated by Synchro...
Titan's VUV photochemistry is studied by laboratory simulation and numerical modeling.In the laborat...
Part of the special section “Chemistry: Titan Atmosphere”International audienceExperimental simulati...
International audienceTitan's upper atmosphere produces an ionosphere at high altitudes from photoio...
Many models with different characteristics have been published so far to study the chemical processe...
International audienceTitan, the largest moon of Saturn, has a dense atmosphere whose upper layers a...
International audienceWe present a one-dimensional coupled ion-neutral photochemical kinetics and di...
International audienceTitan is the largest satellite of Saturn. It has a dense atmosphere of 1.5 bar...