Context: Dust in late-type galaxies in the local Universe is responsible for absorbing approximately one third of the energy emitted by stars. It is often assumed that dust heating is mainly attributable to the absorption of ultraviolet and optical photons emitted by the youngest (≤ 100 Myr) stars. Consequently, thermal re-emission by dust at far-infrared wavelengths is often linked to the star- formation activity of a galaxy. However, several studies argue that the contribution to dust heating by much older stellar populations might be more significant than previously thought. Advances in radiation transfer simulations finally allow us to actually quantify the heating mechanisms of diffuse dust by the stellar radiation field. Aims: As one ...
Within the framework of the DustPedia project we study the effect of cosmic dust on a vast sample of...
Context. Investigating the dust heating mechanisms in galaxies provides a deeper understanding of ho...
International audienceContext. Interstellar dust absorbs stellar light very efficiently, thus shapin...
Context: Dust in late-type galaxies in the local Universe is responsible for absorbing approximately...
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...
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...
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...
Within the framework of the DustPedia project we study the effect of cosmic dust on a vast sample of...
Context. Investigating the dust heating mechanisms in galaxies provides a deeper understanding of ho...
International audienceContext. Interstellar dust absorbs stellar light very efficiently, thus shapin...
Context: Dust in late-type galaxies in the local Universe is responsible for absorbing approximately...
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...
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...
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...
Within the framework of the DustPedia project we study the effect of cosmic dust on a vast sample of...
Context. Investigating the dust heating mechanisms in galaxies provides a deeper understanding of ho...
International audienceContext. Interstellar dust absorbs stellar light very efficiently, thus shapin...