We investigate the composition and shape distribution of silicate dust grains in the interstellar medium. The effects of the amount of magnesium and iron in the silicate lattice are studied in detail. We fit the spectral shape of the interstellar 10 μm extinction feature as observed towards the galactic center using various particle shapes and dust materials. We use very irregularly shaped coated and non-coated porous Gaussian Random Field particles as well as a statistical approach to model shape effects. For the dust materials we use amorphous and crystalline silicates with various composition as well as silicon carbide (SiC). The results of our analysis of the 10 μm feature are used to compute the shape of the 20 μm silicate feature and ...
We analyse observational correlations for three elements entering into the composition of interstell...
We analyse observational correlations for three elements entering into the composition of interstell...
We have analyzed the 9.7 and "18'' mu m interstellar silicate absorption features along the line of ...
We investigate the composition and shape distribution of silicate dust grains in the interstellar me...
We investigate the composition and shape distribution of silicate dust grains in the interstellar me...
We investigate the composition and shape distribution of silicate dust grains in the interstellar me...
We investigate the composition and shape distribution of silicate dust grains in the interstellar me...
Infrared spectroscopy provides a direct handle on the composition and structure of interstellar dust...
Context. Studying absorption and scattering of X-ray radiation by interstellar dust grains allows us...
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...
We analyse observational correlations for three elements entering into the composition of interstell...
Context. The dense Galactic environment is a large reservoir of interstellar dust. Therefore, this r...
Context. The dense Galactic environment is a large reservoir of interstellar dust. Therefore, this r...
We analyse observational correlations for three elements entering into the composition of interstell...
We analyse observational correlations for three elements entering into the composition of interstell...
We analyse observational correlations for three elements entering into the composition of interstell...
We have analyzed the 9.7 and "18'' mu m interstellar silicate absorption features along the line of ...
We investigate the composition and shape distribution of silicate dust grains in the interstellar me...
We investigate the composition and shape distribution of silicate dust grains in the interstellar me...
We investigate the composition and shape distribution of silicate dust grains in the interstellar me...
We investigate the composition and shape distribution of silicate dust grains in the interstellar me...
Infrared spectroscopy provides a direct handle on the composition and structure of interstellar dust...
Context. Studying absorption and scattering of X-ray radiation by interstellar dust grains allows us...
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...
We analyse observational correlations for three elements entering into the composition of interstell...
Context. The dense Galactic environment is a large reservoir of interstellar dust. Therefore, this r...
Context. The dense Galactic environment is a large reservoir of interstellar dust. Therefore, this r...
We analyse observational correlations for three elements entering into the composition of interstell...
We analyse observational correlations for three elements entering into the composition of interstell...
We analyse observational correlations for three elements entering into the composition of interstell...
We have analyzed the 9.7 and "18'' mu m interstellar silicate absorption features along the line of ...