International audienceContext. Protoplanetary disks, interstellar clouds, and active galactic nuclei, contain X-ray dominated regions. X-rays interact with the dust and gas present in such environments. While a few laboratory X-ray irradiation experiments have been performed on ices, X-ray irradiation experiments on bare cosmic dust analogs have been scarce up to now. Aims. Our goal is to study the effects of hard X-rays on cosmic dust analogs via in-situ X-ray diffraction. By using a hard X-ray synchrotron nanobeam, we seek to simulate cumulative X-ray exposure on dust grains during their lifetime in these astrophysical environments, and provide an upper limit on the effect of hard X-rays on dust grain structure. Methods. We prepared ensta...
Context. Studying absorption and scattering of X-ray radiation by interstellar dust grains allows us...
Context. The dense Galactic environment is a large reservoir of interstellar dust. Therefore, this r...
Abstract. Grains entering our solar system at the heliopause or encountered by an interstellar probe...
Context. Protoplanetary disks, interstellar clouds, and active galactic nuclei contain X-ray-dominat...
[Context] Protoplanetary disks, interstellar clouds, and active galactic nuclei contain X-ray-domina...
During their lifetime, cosmic dust silicates suffer from a continuous processing by annealing, c...
The structural evolution of cosmic dust analogues has been investigated using in situ synchrotron X-...
While a significant fraction of silicate dust in stellar winds has a crystalline structure, in the i...
Aims. High-energy irradiation of circumstellar material might impact the structure and the compositi...
Aims. High-energy irradiation of circumstellar material might impact the structure and the compositi...
International audienceSilicate grains in space have attracted recently a wide interest of astrophysi...
Context. Studying absorption and scattering of X-ray radiation by interstellar dust grains allows us...
Context. The dense Galactic environment is a large reservoir of interstellar dust. Therefore, this r...
Abstract. Grains entering our solar system at the heliopause or encountered by an interstellar probe...
Context. Protoplanetary disks, interstellar clouds, and active galactic nuclei contain X-ray-dominat...
[Context] Protoplanetary disks, interstellar clouds, and active galactic nuclei contain X-ray-domina...
During their lifetime, cosmic dust silicates suffer from a continuous processing by annealing, c...
The structural evolution of cosmic dust analogues has been investigated using in situ synchrotron X-...
While a significant fraction of silicate dust in stellar winds has a crystalline structure, in the i...
Aims. High-energy irradiation of circumstellar material might impact the structure and the compositi...
Aims. High-energy irradiation of circumstellar material might impact the structure and the compositi...
International audienceSilicate grains in space have attracted recently a wide interest of astrophysi...
Context. Studying absorption and scattering of X-ray radiation by interstellar dust grains allows us...
Context. The dense Galactic environment is a large reservoir of interstellar dust. Therefore, this r...
Abstract. Grains entering our solar system at the heliopause or encountered by an interstellar probe...