Context. Sulfur is a biogenic element used as a tracer of the evolution of interstellar clouds to stellar systems. However, most of the expected sulfur in molecular clouds remains undetected. Sulfur disappears from the gas phase in two steps. The first depletion occurs during the translucent phase, reducing the gas-phase sulfur by 7–40 times, while the following freeze-out step occurs in molecular clouds, reducing it by another order of magnitude. This long-standing question awaits an explanation. Aims. The aim of this study is to understand under what form the missing sulfur is hiding in molecular clouds. The possibility that sulfur is depleted onto dust grains is considered. Methods. Experimental simulations mimicking H2S ice UV photoproc...
Context. Gas phase Elemental abundances in molecular CloudS (GEMS) is an IRAM 30-m Large Program aim...
Context. Gas phase Elemental abundances in molecular CloudS (GEMS) is an IRAM 30-m Large Program aim...
International audienceSulfur is of fundamental importance in a wide variety of phenomena such as lif...
Context. Sulfur is a biogenic element used as a tracer of the evolution of interstellar clouds to st...
Context. Sulfur is a biogenic element used as a tracer of the evolution of interstellar clouds to st...
Context. Sulfur is a biogenic element used as a tracer of the evolution of interstellar clouds to st...
Aims. This work aims to study the unexplained sulfur depletion observed toward dense clouds and prot...
Context. A fraction of the missing sulfur in dense clouds and circumstellar regions could be in the ...
Context. Sulphur is one of the most abundant elements in the Universe. Surprisingly, sulphuretted mo...
Context. The elemental depletion of interstellar sulfur from the gas phase has been a recurring chal...
Sulphur is one of the most abundant elements in the Universe and plays a crucial role in biological ...
International audienceSulfur gases substantially affect the photochemistry of planetary atmospheres ...
International audienceHydride molecules lie at the base of interstellar chemistry, but the synthesis...
Context. Sulphur is one of the most abundant elements in the Universe. Surprisingly, sulphuretted mo...
Context. Gas phase Elemental abundances in molecular CloudS (GEMS) is an IRAM 30-m Large Program aim...
Context. Gas phase Elemental abundances in molecular CloudS (GEMS) is an IRAM 30-m Large Program aim...
International audienceSulfur is of fundamental importance in a wide variety of phenomena such as lif...
Context. Sulfur is a biogenic element used as a tracer of the evolution of interstellar clouds to st...
Context. Sulfur is a biogenic element used as a tracer of the evolution of interstellar clouds to st...
Context. Sulfur is a biogenic element used as a tracer of the evolution of interstellar clouds to st...
Aims. This work aims to study the unexplained sulfur depletion observed toward dense clouds and prot...
Context. A fraction of the missing sulfur in dense clouds and circumstellar regions could be in the ...
Context. Sulphur is one of the most abundant elements in the Universe. Surprisingly, sulphuretted mo...
Context. The elemental depletion of interstellar sulfur from the gas phase has been a recurring chal...
Sulphur is one of the most abundant elements in the Universe and plays a crucial role in biological ...
International audienceSulfur gases substantially affect the photochemistry of planetary atmospheres ...
International audienceHydride molecules lie at the base of interstellar chemistry, but the synthesis...
Context. Sulphur is one of the most abundant elements in the Universe. Surprisingly, sulphuretted mo...
Context. Gas phase Elemental abundances in molecular CloudS (GEMS) is an IRAM 30-m Large Program aim...
Context. Gas phase Elemental abundances in molecular CloudS (GEMS) is an IRAM 30-m Large Program aim...
International audienceSulfur is of fundamental importance in a wide variety of phenomena such as lif...