Context. Studying the composition of dust in the interstellar medium (ISM) is crucial for understanding the cycle of dust in our galaxy. Aims. The mid-infrared spectral signature of amorphous silicates, the most abundant dust species in the ISM, is studied in different lines-of-sight through the Galactic plane, thus probing different conditions in the ISM. Methods. We have analysed ten spectra from the Spitzer archive, of which six lines-of-sight probe diffuse interstellar medium material and four probe molecular cloud material. The 9.7 μm silicate absorption features in seven of these spectra were studied in terms of their shape and strength. In addition, the shape of the 18 μm silicate absorption features in four of the diffuse sightline ...
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 ...
We have analyzed the 9.7 and "18'' mu m interstellar silicate absorption features along the line of ...
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...
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...
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...
Dust in the interstellar medium is important to astronomers because it absorbs light from more dista...
The 9.7-μm silicate absorption profile in the interstellar medium (ISM) provides important informati...
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 ...
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 ...
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...
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...
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...
Dust in the interstellar medium is important to astronomers because it absorbs light from more dista...
The 9.7-μm silicate absorption profile in the interstellar medium (ISM) provides important informati...
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 ...
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 ...