Context. Dust reprocesses about half of the stellar radiation in galaxies. The thermal re-emission by dust of absorbed energy is considered to be driven merely by young stars so is often applied to tracing the star formation rate in galaxies. Recent studies have argued that the old stellar population might be responsible for a non-negligible fraction of the radiative dust heating. Aims. In this work, we aim to analyze the contribution of young (≲100 Myr) and old (~10 Gyr) stellar populations to radiative dust heating processes in the nearby grand-design spiral galaxy M 51 using radiative transfer modeling. High-resolution 3D radiative transfer (RT) models are required to describe the complex morphologies of asymmetric spiral arms an...
International audienceContext. Interstellar dust absorbs stellar light very efficiently, thus shapin...
International audienceContext. Dust in late-type galaxies in the local Universe is responsible for a...
Context. Dust in late-type galaxies in the local Universe is responsible for absorbing approximately...
International audienceContext. Dust reprocesses about half of the stellar radiation in galaxies. The...
Context. Dust reprocesses about half of the stellar radiation in galaxies. The thermal re-emission b...
Context. Dust reprocesses about half of the stellar radiation in galaxies. The thermal re-emission b...
Context. Dust reprocesses about half of the stellar radiation in galaxies. The thermal re-emission b...
Context. Dust reprocesses about half of the stellar radiation in galaxies. The thermal re-emission b...
Context. Dust reprocesses about half of the stellar radiation in galaxies. The thermal re-emission b...
Context. Interstellar dust absorbs stellar light very efficiently, thus shaping the energy output of...
Context. Interstellar dust absorbs stellar light very efficiently, thus shaping the energy output of...
Context. Interstellar dust absorbs stellar light very efficiently, thus shaping the energy output of...
Context. Dust reprocesses about half of the stellar radiation in galaxies. The thermal re-emission b...
International audienceContext. Dust in late-type galaxies in the local Universe is responsible for a...
International audienceContext. Dust in late-type galaxies in the local Universe is responsible for a...
International audienceContext. Interstellar dust absorbs stellar light very efficiently, thus shapin...
International audienceContext. Dust in late-type galaxies in the local Universe is responsible for a...
Context. Dust in late-type galaxies in the local Universe is responsible for absorbing approximately...
International audienceContext. Dust reprocesses about half of the stellar radiation in galaxies. The...
Context. Dust reprocesses about half of the stellar radiation in galaxies. The thermal re-emission b...
Context. Dust reprocesses about half of the stellar radiation in galaxies. The thermal re-emission b...
Context. Dust reprocesses about half of the stellar radiation in galaxies. The thermal re-emission b...
Context. Dust reprocesses about half of the stellar radiation in galaxies. The thermal re-emission b...
Context. Dust reprocesses about half of the stellar radiation in galaxies. The thermal re-emission b...
Context. Interstellar dust absorbs stellar light very efficiently, thus shaping the energy output of...
Context. Interstellar dust absorbs stellar light very efficiently, thus shaping the energy output of...
Context. Interstellar dust absorbs stellar light very efficiently, thus shaping the energy output of...
Context. Dust reprocesses about half of the stellar radiation in galaxies. The thermal re-emission b...
International audienceContext. Dust in late-type galaxies in the local Universe is responsible for a...
International audienceContext. Dust in late-type galaxies in the local Universe is responsible for a...
International audienceContext. Interstellar dust absorbs stellar light very efficiently, thus shapin...
International audienceContext. Dust in late-type galaxies in the local Universe is responsible for a...
Context. Dust in late-type galaxies in the local Universe is responsible for absorbing approximately...