Solid state spectroscopy continues to be an important source of information on the mineralogical composition and physical properties of dust grains both in space and on planetary surfaces. With only a few exceptions, artificially produced or natural terrestrial analog materials, rather than `real' cosmic dust grains, are the subject of solid state astrophysics. The Jena laboratory has provided a large number of data sets characterizing the UV, optical and infrared properties of such cosmic dust analogs. The present paper highlights recent developments and results achieved in this context, focussing on `non-standard conditions' such as very low temperatures, very high temperatures and very long wavelengths
The laboratory analyses of cosmic dust analogues--that in the context of this paper include interste...
International audienceContext. Cold dust grains are responsible for the far-infrared and submillimet...
Context. Several astrophysically relevant solid oxides and silicates have extremely small opacities ...
Our insight into the structural properties of cosmic dust has been improved by observations at highe...
Interstellar dust and ice play a major role in the thermodynamical and chemical evolution of the int...
The dust in protoplanetary disks is influenced by many different processes. Among others, ...
International audienceContext. Cosmic dust models are key ingredients in advancing our understanding...
Context. Many cosmic dust species, among them refractory oxides, form at temperatures higher than 30...
In this chapter, the main techniques for producing and characterizing cosmic dust analogues in...
Infrared spectroscopy is the best astronomical tool for studying the composition of cosmic dust. Tha...
Context. The submillimeter spectral domain has been extensively explored by the Herschel and Planck ...
Cosmic dust particles are an interesting system of small particles with sizes on the nanometer-...
International audienceContext. The submillimeter spectral domain has been extensively explored by th...
We address the need for laboratory research into the long-wavelength spectra of astrophysical dust a...
Aims. In a previous paper we proposed a new model for the emission by amorphous astronomical dust gr...
The laboratory analyses of cosmic dust analogues--that in the context of this paper include interste...
International audienceContext. Cold dust grains are responsible for the far-infrared and submillimet...
Context. Several astrophysically relevant solid oxides and silicates have extremely small opacities ...
Our insight into the structural properties of cosmic dust has been improved by observations at highe...
Interstellar dust and ice play a major role in the thermodynamical and chemical evolution of the int...
The dust in protoplanetary disks is influenced by many different processes. Among others, ...
International audienceContext. Cosmic dust models are key ingredients in advancing our understanding...
Context. Many cosmic dust species, among them refractory oxides, form at temperatures higher than 30...
In this chapter, the main techniques for producing and characterizing cosmic dust analogues in...
Infrared spectroscopy is the best astronomical tool for studying the composition of cosmic dust. Tha...
Context. The submillimeter spectral domain has been extensively explored by the Herschel and Planck ...
Cosmic dust particles are an interesting system of small particles with sizes on the nanometer-...
International audienceContext. The submillimeter spectral domain has been extensively explored by th...
We address the need for laboratory research into the long-wavelength spectra of astrophysical dust a...
Aims. In a previous paper we proposed a new model for the emission by amorphous astronomical dust gr...
The laboratory analyses of cosmic dust analogues--that in the context of this paper include interste...
International audienceContext. Cold dust grains are responsible for the far-infrared and submillimet...
Context. Several astrophysically relevant solid oxides and silicates have extremely small opacities ...