Context. Infrared (IR) spectroscopy and imaging provide a prime tool to study the characteristics of polycyclic aromatic hydrocarbon (PAH) molecules and the mineralogy in regions of star formation. Herbig Ae/Be stars are known to have varying amounts of natal cloud material present in their vicinity. Aims. Our aim is to study the characteristics of the mid-IR emission originating in Herbig Ae/Be stars, especially the extent of the emission and how this relates to the (proto-) stellar characteristics. Methods. Today's powerful ground-and space-based telescopes provide images and spectra at unprecedented spectral and spatial resolution. We analyse the images and spectra from four Herbig Ae/Be stars (IRAS 06084-0611, CD-42 11721, TY CrA, and H...
Infrared (IR) emission features at 3.3, 6.2, 7.7, 8.6, and 11.3 mum are generally attributed to IR f...
The chemistry of astronomical hydrocarbons, responsible for the well-known infrared emission feature...
Context. The evolution of young massive protoplanetary disks toward planetary systems is expected to...
Context. Infrared (IR) spectroscopy and imaging provide a prime tool to study the characteristics of...
Context. Infrared (IR) spectra provide a prime tool to study the characteristics of polycyclic aroma...
Context. Infrared ( IR) spectra provide a prime tool to study the characteristics of polycyclic arom...
We present spectra of four Herbig Ae/Be stars obtained with the Infrared Spectrograph (IRS) on the S...
Context. Infrared (IR) spectra provide a prime tool to study the characteristics of polycyclic arom...
Context. Infrared ( IR) spectra provide a prime tool to study the characteristics of polycyclic arom...
We present spectra of a sample of Herbig Ae and Be (HAeBe) stars obtained with the Infrared Spectrog...
Context. The study of the formation of massive stars is complicated because of the short times scale...
Context. The study of the formation of massive stars is complicated because of the short times scale...
We have investigated the infrared spectra of all 46 Herbig Ae/Be stars for which spectroscopic data...
We present adaptive optics high angular resolution ($\sim0.1\arcsec$) spectroscopic observations in ...
Aim. We investigate, in the mid-infrared, the spatial properties of the polycyclic aromatic hydrocar...
Infrared (IR) emission features at 3.3, 6.2, 7.7, 8.6, and 11.3 mum are generally attributed to IR f...
The chemistry of astronomical hydrocarbons, responsible for the well-known infrared emission feature...
Context. The evolution of young massive protoplanetary disks toward planetary systems is expected to...
Context. Infrared (IR) spectroscopy and imaging provide a prime tool to study the characteristics of...
Context. Infrared (IR) spectra provide a prime tool to study the characteristics of polycyclic aroma...
Context. Infrared ( IR) spectra provide a prime tool to study the characteristics of polycyclic arom...
We present spectra of four Herbig Ae/Be stars obtained with the Infrared Spectrograph (IRS) on the S...
Context. Infrared (IR) spectra provide a prime tool to study the characteristics of polycyclic arom...
Context. Infrared ( IR) spectra provide a prime tool to study the characteristics of polycyclic arom...
We present spectra of a sample of Herbig Ae and Be (HAeBe) stars obtained with the Infrared Spectrog...
Context. The study of the formation of massive stars is complicated because of the short times scale...
Context. The study of the formation of massive stars is complicated because of the short times scale...
We have investigated the infrared spectra of all 46 Herbig Ae/Be stars for which spectroscopic data...
We present adaptive optics high angular resolution ($\sim0.1\arcsec$) spectroscopic observations in ...
Aim. We investigate, in the mid-infrared, the spatial properties of the polycyclic aromatic hydrocar...
Infrared (IR) emission features at 3.3, 6.2, 7.7, 8.6, and 11.3 mum are generally attributed to IR f...
The chemistry of astronomical hydrocarbons, responsible for the well-known infrared emission feature...
Context. The evolution of young massive protoplanetary disks toward planetary systems is expected to...