The 9.7-μm silicate absorption profile in the interstellar medium (ISM) provides important information on the physical and chemical composition of interstellar dust grains. Measurements in the Milky Way have shown that the profile in the diffuse ISM is very similar to the amorphous silicate profiles found in circumstellar dust shells around late M stars, and narrower than the silicate profile in denser star-forming regions. Here, we investigate the silicate absorption profile towards the very heavily obscured nucleus of NGC 4418, the galaxy with the deepest known silicate absorption feature, and compare it to the profiles seen in the Milky Way. Comparison between the 8–13 μm spectrum obtained with Thermal-Region Camera Spectrograph on Gemin...
International audienceWe present a comprehensive study of the silicate features at 9.7 and 18 μm of ...
We have analyzed the 9.7 and "18'' mu m interstellar silicate absorption features along the line of ...
We have analyzed the 9.7 and "18'' mu m interstellar silicate absorption features along the line of ...
Spectroscopy at 8-13 μm with T-ReCS on Gemini-S is presented for three galaxies with substantial sil...
Spectroscopy at 8-13 μm with T-ReCS on Gemini-S is presented for three galaxies with substantial sil...
Spectroscopy at 8-13 microns with T-ReCS on Gemini-S is presented for 3 galaxies with substantial si...
Context. Studying the composition of dust in the interstellar medium (ISM) is crucial for understand...
Context. Studying the composition of dust in the interstellar medium (ISM) is crucial for understand...
Dust in the interstellar medium is important to astronomers because it absorbs light from more dista...
Infrared spectroscopy provides a direct handle on the composition and structure of interstellar dust...
Infrared spectroscopy provides a direct handle on the composition and structure of interstellar dust...
Infrared spectroscopy provides a direct handle on the composition and structure of interstellar dust...
Context. Studying the composition of dust in the interstellar medium (ISM) is crucial for understand...
Context. Studying the composition of dust in the interstellar medium (ISM) is crucial for understand...
We present a comprehensive study of the silicate features at 9.7 and 18 μm of a sample of almost 800...
International audienceWe present a comprehensive study of the silicate features at 9.7 and 18 μm of ...
We have analyzed the 9.7 and "18'' mu m interstellar silicate absorption features along the line of ...
We have analyzed the 9.7 and "18'' mu m interstellar silicate absorption features along the line of ...
Spectroscopy at 8-13 μm with T-ReCS on Gemini-S is presented for three galaxies with substantial sil...
Spectroscopy at 8-13 μm with T-ReCS on Gemini-S is presented for three galaxies with substantial sil...
Spectroscopy at 8-13 microns with T-ReCS on Gemini-S is presented for 3 galaxies with substantial si...
Context. Studying the composition of dust in the interstellar medium (ISM) is crucial for understand...
Context. Studying the composition of dust in the interstellar medium (ISM) is crucial for understand...
Dust in the interstellar medium is important to astronomers because it absorbs light from more dista...
Infrared spectroscopy provides a direct handle on the composition and structure of interstellar dust...
Infrared spectroscopy provides a direct handle on the composition and structure of interstellar dust...
Infrared spectroscopy provides a direct handle on the composition and structure of interstellar dust...
Context. Studying the composition of dust in the interstellar medium (ISM) is crucial for understand...
Context. Studying the composition of dust in the interstellar medium (ISM) is crucial for understand...
We present a comprehensive study of the silicate features at 9.7 and 18 μm of a sample of almost 800...
International audienceWe present a comprehensive study of the silicate features at 9.7 and 18 μm of ...
We have analyzed the 9.7 and "18'' mu m interstellar silicate absorption features along the line of ...
We have analyzed the 9.7 and "18'' mu m interstellar silicate absorption features along the line of ...