Context. In the near future, high spatial and spectral infrared (IR) data of star-forming regions obtained by the James Webb Space Telescope may reveal new solid-state features of various species, including more intriguing classes of chemical compounds. The identification of complex organic molecules (COMs) in the upcoming data will only be possible when laboratory IR ice spectra of these species under astronomically relevant conditions are available for comparison. For this purpose, systematic series of laboratory measurements are performed, providing high-resolution IR spectra of COMs. Here, spectra of pure methylamine (CH3NH2) and methylamine-containing ices are discussed. Aims. The work is aimed at characterizing the mid-IR (500–4000 cm...
Context. Methyl formate (HCOOCH3) is a complex organic molecule detected in hot cores and hot corino...
Context. New spectroscopic observations in the far-infrared (IR) range are expected from future plan...
$^{\dagger}$Mellon Institute, Pittsburgh 13, Pa. $^\ddagger$Department of Chemistry, Cornell Unive...
Context. In the near future, high spatial and spectral infrared (IR) data of star-forming regions ob...
Context. In the near future, high spatial and spectral infrared (IR) data of star-forming regions ob...
Context. Infrared spectroscopy of star and planet forming regions is at the dawn of a new age with t...
Context. Infrared spectroscopy of star and planet forming regions is at the dawn of a new age with t...
We conducted a systematic study of the near-IR and mid-IR spectra of ammonia-water ices at various N...
International audienceContext. Laboratory simulations on interstellar or cometary ice analogues are ...
Context.HCOOH is one of the more common species in interstellar ices with abundances of 1–5% with re...
Context. Although solid-state pathways are expected to dominate the formation mechanisms of many com...
We present 2.5-30 mum spectra from the Short-Wavelength Spectrometer of the Infrared Space Observato...
We present 2.5-30 mum spectra from the Short-Wavelength Spectrometer of the Infrared Space Observato...
Context. Whereas observational astronomy now routinely extends to the far-infrared region of the spe...
Context. Methyl formate (HCOOCH3) is a complex organic molecule detected in hot cores and hot corino...
Context. New spectroscopic observations in the far-infrared (IR) range are expected from future plan...
$^{\dagger}$Mellon Institute, Pittsburgh 13, Pa. $^\ddagger$Department of Chemistry, Cornell Unive...
Context. In the near future, high spatial and spectral infrared (IR) data of star-forming regions ob...
Context. In the near future, high spatial and spectral infrared (IR) data of star-forming regions ob...
Context. Infrared spectroscopy of star and planet forming regions is at the dawn of a new age with t...
Context. Infrared spectroscopy of star and planet forming regions is at the dawn of a new age with t...
We conducted a systematic study of the near-IR and mid-IR spectra of ammonia-water ices at various N...
International audienceContext. Laboratory simulations on interstellar or cometary ice analogues are ...
Context.HCOOH is one of the more common species in interstellar ices with abundances of 1–5% with re...
Context. Although solid-state pathways are expected to dominate the formation mechanisms of many com...
We present 2.5-30 mum spectra from the Short-Wavelength Spectrometer of the Infrared Space Observato...
We present 2.5-30 mum spectra from the Short-Wavelength Spectrometer of the Infrared Space Observato...
Context. Whereas observational astronomy now routinely extends to the far-infrared region of the spe...
Context. Methyl formate (HCOOCH3) is a complex organic molecule detected in hot cores and hot corino...
Context. New spectroscopic observations in the far-infrared (IR) range are expected from future plan...
$^{\dagger}$Mellon Institute, Pittsburgh 13, Pa. $^\ddagger$Department of Chemistry, Cornell Unive...