Context. Isotopic fractionation in dense molecular cores has been suggested as a possible origin of large 14N/15N ratio variations in solar system materials. While chemical models can explain some observed variations with different fractionation patterns for molecules with-NH or-CN functional groups, they fail to reproduce the observed ratios in diazenylium (N2H+). Aims. Observations of doubly 15N-substituted species could provide important constraints and insights for theoretical chemical models of isotopic fractionation. However, spectroscopic data are very scarce. Methods. The rotational spectra of the fully 15N-substituted isopologues of the diazenylium ion, 15N2H+and 15N2D+, have been investigated in the laboratory well into the THz re...
Context. Samples of pristine solar system material found in meteorites and interplanetary dust parti...
Context. Samples of pristine solar system material found in meteorites and interplanetary dust parti...
Nitrogen-bearing molecules in cold molecular clouds exhibit a range of isotopic fractionation ratios...
none6siContext. Isotopic fractionation in dense molecular cores has been suggested as a possible ori...
Context. Isotopic fractionation in dense molecular cores has been suggested as a possible origin of ...
International audienceThe line intensities of the fundamental rotational transitions of H13CN and HC...
Context. The N-15 fractionation has been observed to show large variations among astrophysical sourc...
Context. The increased sensitivity and high spectral resolution of millimeter telescopes allow the d...
Context. The 15N fractionation has been observed to show large variations among astrophysical source...
Context. The ^(15)N isotopologue abundance ratio measured today in different bodies of the solar sys...
Context. The 15N fractionation has been observed to show large variations among astrophysical source...
We report on the first measurements of the isotopic ratio 14N/15N in N2H+ toward a statistically sig...
A central issue for understanding the formation and evolution of matter in the early Solar System is...
Context. Nitrogen is one of the most abundant elements in the Universe and its 14N/15N isotopic rati...
Context. Isotopologue abundance ratios are important to understand the evolution of astrophysical ob...
Context. Samples of pristine solar system material found in meteorites and interplanetary dust parti...
Context. Samples of pristine solar system material found in meteorites and interplanetary dust parti...
Nitrogen-bearing molecules in cold molecular clouds exhibit a range of isotopic fractionation ratios...
none6siContext. Isotopic fractionation in dense molecular cores has been suggested as a possible ori...
Context. Isotopic fractionation in dense molecular cores has been suggested as a possible origin of ...
International audienceThe line intensities of the fundamental rotational transitions of H13CN and HC...
Context. The N-15 fractionation has been observed to show large variations among astrophysical sourc...
Context. The increased sensitivity and high spectral resolution of millimeter telescopes allow the d...
Context. The 15N fractionation has been observed to show large variations among astrophysical source...
Context. The ^(15)N isotopologue abundance ratio measured today in different bodies of the solar sys...
Context. The 15N fractionation has been observed to show large variations among astrophysical source...
We report on the first measurements of the isotopic ratio 14N/15N in N2H+ toward a statistically sig...
A central issue for understanding the formation and evolution of matter in the early Solar System is...
Context. Nitrogen is one of the most abundant elements in the Universe and its 14N/15N isotopic rati...
Context. Isotopologue abundance ratios are important to understand the evolution of astrophysical ob...
Context. Samples of pristine solar system material found in meteorites and interplanetary dust parti...
Context. Samples of pristine solar system material found in meteorites and interplanetary dust parti...
Nitrogen-bearing molecules in cold molecular clouds exhibit a range of isotopic fractionation ratios...