Context. The chemical and physical properties of interstellar dust in the densest regions of the Galaxy are still not well understood. X-rays provide a powerful probe since they can penetrate gas and dust over a wide range of column densities (up to 1024 cm-2). The interaction (scattering and absorption) with the medium imprints spectral signatures that reflect the individual atoms which constitute the gas, molecule, or solid. Aims. In this work we investigate the ability of high resolution X-ray spectroscopy to probe the properties of cosmic grains containing iron. Although iron is heavily depleted into interstellar dust, the nature of the Fe-bearing grains is still largely uncertain. Methods. In our analysis we use iron K-edge synchrotron...
Context. The composition and properties of interstellar silicate dust are not well understood. In X-...
We study the absorption and scattering of X-ray radiation by interstellar dust particles, which allo...
Hard X-ray, quantitative, fluorescence elemental imaging was performed on the ID22NI nanoprobe and I...
Context. The chemical and physical properties of interstellar dust in the densest regions of the Gal...
Understanding the chemistry of the interstellar medium (ISM) is fundamental for the comprehension of...
Understanding the chemistry of the interstellar medium (ISM) is fundamental for the comprehension of...
X-ray spectroscopy of interstellar dust (ID), seen in absorption against spectra of bright backgroun...
We present a newtechnique for determining the quantity and composition of dust in astrophysical envi...
Context. The diffuse interstellar medium (ISM) is an integral part of the evolution of the entire Ga...
Context. Studying absorption and scattering of X-ray radiation by interstellar dust grains allows us...
In this thesis, we present new laboratory data of interstellar dust analogues. These mea...
Aims. We present a study on the prospects of observing carbon, sulfur, and other lower abundance ele...
Aims. The interstellar medium (ISM) has a multiphase structure characterized by gas, dust, and molec...
Aims. The interstellar medium (ISM) has a multiphase structure characterized by gas, dust, and molec...
Context. The dense Galactic environment is a large reservoir of interstellar dust. Therefore, this r...
Context. The composition and properties of interstellar silicate dust are not well understood. In X-...
We study the absorption and scattering of X-ray radiation by interstellar dust particles, which allo...
Hard X-ray, quantitative, fluorescence elemental imaging was performed on the ID22NI nanoprobe and I...
Context. The chemical and physical properties of interstellar dust in the densest regions of the Gal...
Understanding the chemistry of the interstellar medium (ISM) is fundamental for the comprehension of...
Understanding the chemistry of the interstellar medium (ISM) is fundamental for the comprehension of...
X-ray spectroscopy of interstellar dust (ID), seen in absorption against spectra of bright backgroun...
We present a newtechnique for determining the quantity and composition of dust in astrophysical envi...
Context. The diffuse interstellar medium (ISM) is an integral part of the evolution of the entire Ga...
Context. Studying absorption and scattering of X-ray radiation by interstellar dust grains allows us...
In this thesis, we present new laboratory data of interstellar dust analogues. These mea...
Aims. We present a study on the prospects of observing carbon, sulfur, and other lower abundance ele...
Aims. The interstellar medium (ISM) has a multiphase structure characterized by gas, dust, and molec...
Aims. The interstellar medium (ISM) has a multiphase structure characterized by gas, dust, and molec...
Context. The dense Galactic environment is a large reservoir of interstellar dust. Therefore, this r...
Context. The composition and properties of interstellar silicate dust are not well understood. In X-...
We study the absorption and scattering of X-ray radiation by interstellar dust particles, which allo...
Hard X-ray, quantitative, fluorescence elemental imaging was performed on the ID22NI nanoprobe and I...