Recent results from the Raymond and Beverly Sackler Laboratory for Astrophysics on spectroscopy and processing of interstellar ice analogues are summarized. This includes thermal desorption studies of pure, layered and mixed CO, N2 and O2 ices, and infrared spectroscopy and heating of CO‐CO2, CO‐H2O, CO‐HCOOH, CO‐CH4 and CO‐CH3OH layered and mixed ices. Laboratory data of CO‐surface adsorbates show good agreement with the unidentified 2175 cm−1 interstellar feature. Complementary ab initio quantum chemical calculations and molecular dynamics simulations have been performed to provide insight into the gas‐grain interactions and interstellar ice processing. This includes the first molecular dynamics study of the photodissociation of water ice...
Aims. Solid O2 has been proposed as a possible reservoir for molecular oxygen in dense clouds throug...
The evolution of star-forming regions and their thermal balance are strongly influenced by their che...
The relevance of interstellar ice to the chemical complexity of the interstellar medium has dramatic...
We present laboratory data on pure, layered and mixed CO and O-2 ices relevant for understanding the...
Molecular ices freeze out on the surface of dust grains within the interstellar medium (ISM). Dust g...
Solid CO2 has been detected in many lines of sight in the interstellar medium from infrared observat...
We present laboratory data on pure, layered and mixed CO and O2 ices relevant for understanding the ...
Data from observations of star forming regions and laboratory surface-astrochemistry experiments hav...
Aims. We present the novel InterStellar Astrochemistry Chamber (ISAC), designed for studyi...
Aims. We present the novel InterStellar Astrochemistry Chamber (ISAC), designed for studyi...
We have recorded reflection–absorption infrared spectroscopy (RAIRS) and temperature-programmed deso...
Apolar ices have been observed in several regions in dense clouds and are likely dominated by molecu...
Apolar ices have been observed in several regions in dense clouds and are likely dominated by molecu...
The infrared spectra of CO frozen in non-polar ices containing N2, CO2, O2, and H2O, and the ultravi...
Context. A longstanding problem in astrochemistry is how molecules can be maintained in the gas phas...
Aims. Solid O2 has been proposed as a possible reservoir for molecular oxygen in dense clouds throug...
The evolution of star-forming regions and their thermal balance are strongly influenced by their che...
The relevance of interstellar ice to the chemical complexity of the interstellar medium has dramatic...
We present laboratory data on pure, layered and mixed CO and O-2 ices relevant for understanding the...
Molecular ices freeze out on the surface of dust grains within the interstellar medium (ISM). Dust g...
Solid CO2 has been detected in many lines of sight in the interstellar medium from infrared observat...
We present laboratory data on pure, layered and mixed CO and O2 ices relevant for understanding the ...
Data from observations of star forming regions and laboratory surface-astrochemistry experiments hav...
Aims. We present the novel InterStellar Astrochemistry Chamber (ISAC), designed for studyi...
Aims. We present the novel InterStellar Astrochemistry Chamber (ISAC), designed for studyi...
We have recorded reflection–absorption infrared spectroscopy (RAIRS) and temperature-programmed deso...
Apolar ices have been observed in several regions in dense clouds and are likely dominated by molecu...
Apolar ices have been observed in several regions in dense clouds and are likely dominated by molecu...
The infrared spectra of CO frozen in non-polar ices containing N2, CO2, O2, and H2O, and the ultravi...
Context. A longstanding problem in astrochemistry is how molecules can be maintained in the gas phas...
Aims. Solid O2 has been proposed as a possible reservoir for molecular oxygen in dense clouds throug...
The evolution of star-forming regions and their thermal balance are strongly influenced by their che...
The relevance of interstellar ice to the chemical complexity of the interstellar medium has dramatic...