Context. The ^(15)N isotopologue abundance ratio measured today in different bodies of the solar system is thought to be connected to ^(15)N-fractionation effects that would have occurred in the protosolar nebula. Aims. The present study aims at putting constraints on the degree of 15N-fractionation that occurs during the prestellar phase, through observations of D, ^(13)C, and ^(15)N-substituted isotopologues towards B1b. Molecules both from the nitrogen hydride family, i.e. N2H+, and NH3, and from the nitrile family, i.e. HCN, HNC, and CN, are considered in the analysis. Methods. As a first step, we modelled the continuum emission in order to derive the physical structure of the cloud, i.e. gas temperature and H_2 density. These par...
International audienceWe investigated the chemistry of nitrogen--containing species, principally iso...
The fractionation of nitrogen (N) in star-forming regions is a poorly understood process. To put mor...
A central issue for understanding the formation and evolution of matter in the early Solar System is...
Context. The ^(15)N isotopologue abundance ratio measured today in different bodies of the solar sys...
Context. The 15N isotopologue abundance ratio measured today in different bodies of the solar system...
Using the Green Bank Telescope, we have obtained accurate measurements of the ^(14)N/^(15)N isotopic...
International audienceThe line intensities of the fundamental rotational transitions of H13CN and HC...
Context. Isotopologue abundance ratios are important to understand the evolution of astrophysical ob...
Context The nitrogen isotopic ratio is considered an important diagnostic tool of the star formation...
Context. Nitrogen is one of the most abundant elements in the Universe and its 14N/15N isotopic rati...
Accepted for publication in A&A ; http://dx.doi.org/10.1051/0004-6361/201321364Understanding the ori...
We report on the first measurements of the isotopic ratio 14N/15N in N2H+ toward a statistically sig...
Context. Observations of the nitrogen isotopic ratio 14N/15N in the interstellar medium are becoming...
Nitrogen is one of the most abundant elements in the Universe and its 14N/15N isotopic ratio has the...
Primitive materials provide important clues on the processes that occurred during the formation and ...
International audienceWe investigated the chemistry of nitrogen--containing species, principally iso...
The fractionation of nitrogen (N) in star-forming regions is a poorly understood process. To put mor...
A central issue for understanding the formation and evolution of matter in the early Solar System is...
Context. The ^(15)N isotopologue abundance ratio measured today in different bodies of the solar sys...
Context. The 15N isotopologue abundance ratio measured today in different bodies of the solar system...
Using the Green Bank Telescope, we have obtained accurate measurements of the ^(14)N/^(15)N isotopic...
International audienceThe line intensities of the fundamental rotational transitions of H13CN and HC...
Context. Isotopologue abundance ratios are important to understand the evolution of astrophysical ob...
Context The nitrogen isotopic ratio is considered an important diagnostic tool of the star formation...
Context. Nitrogen is one of the most abundant elements in the Universe and its 14N/15N isotopic rati...
Accepted for publication in A&A ; http://dx.doi.org/10.1051/0004-6361/201321364Understanding the ori...
We report on the first measurements of the isotopic ratio 14N/15N in N2H+ toward a statistically sig...
Context. Observations of the nitrogen isotopic ratio 14N/15N in the interstellar medium are becoming...
Nitrogen is one of the most abundant elements in the Universe and its 14N/15N isotopic ratio has the...
Primitive materials provide important clues on the processes that occurred during the formation and ...
International audienceWe investigated the chemistry of nitrogen--containing species, principally iso...
The fractionation of nitrogen (N) in star-forming regions is a poorly understood process. To put mor...
A central issue for understanding the formation and evolution of matter in the early Solar System is...