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相关论文: Nitrogen Isotopic Fractionation in Interstellar Am…

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Ammonia is one of the best tracers of cold dense cores. It is also a minor constituent of interstellar ices and, as such, one of the important nitrogen reservoirs in the protosolar nebula, together with the gas phase nitrogen, in the form…

Context. The increased sensitivity and high spectral resolution of millimeter telescopes allow the detection of an increasing number of isotopically substituted molecules in the interstellar medium. The 14N/ 15N ratio is difficult to…

星系天体物理 · 物理学 2015-06-23 E. Roueff , J. C. Loison , K. M. Hickson

Context. Observations of $\rm ^{14}N/^{15}N$ in the interstellar medium are becoming more frequent thanks to the increased telescope capabilities. However, interpreting these data is still puzzling. In particular, measurements of $\rm…

星系天体物理 · 物理学 2023-06-14 Elena Redaelli , Luca Bizzocchi , Paola Caselli , Jaime E. Pineda

The nitrogen isotope ratio 14N/15N is a powerful tool to trace Galactic stellar nucleosynthesis and constraining Galactic chemical evolution. Previous observations have found lower 14N/15N ratios in the Galactic center and higher values in…

星系天体物理 · 物理学 2024-06-17 J. L. Chen , J. S. Zhang , C. Henkel , Y. T. Yan , H. Z. Yu , Y. X. Wang , Y. P. Zou , J. Y. Zhao , X. Y. Wang

The 15N isotopologue abundance ratio measured today in different bodies of the solar system is thought to be connected to 15N-fractionation effects that would have occured in the protosolar nebula. The present study aims at putting…

星系天体物理 · 物理学 2015-06-17 F. Daniel , M. Gerin , E. Roueff , J. Cernicharo , N. Marcelino , F. Lique , D. C. Lis , D. Teyssier , N. Biver , D. Bockelee--Morvan

The fractionation of nitrogen (N) in star-forming regions is a poorly understood process. To put more stringent observational constraints on the N-fractionation, we have observed with the IRAM-30m telescope a large sample of 66 cores in…

太阳与恒星天体物理 · 物理学 2018-05-02 L. Colzi , F. Fontani , V. M. Rivilla , A. Sánchez-Monge , L. Testi , M. T. Beltrán , P. Caselli

In star forming regions in our own Galaxy, the 14N/15N ratio is found to vary from $\sim$ 100 in meteorites, comets and protoplanetary disks up to $\sim$ 1000 in pre-stellar and star forming cores, while in external galaxies the very few…

星系天体物理 · 物理学 2019-05-08 Serena Viti , Francesco Fontani , Izaskun Jimenez-Serra , Jonathan Holdship

Nitrogen-bearing molecules in cold molecular clouds exhibit a range of isotopic fractionation ratios and these molecules may be the precursors of $^{15}$N enrichments found in comets and meteorites. Chemical model calculations indicate that…

星系天体物理 · 物理学 2017-11-23 E. S. Wirström , S. B. Charnley

Nitrogen-bearing molecules display variable isotopic fractionation levels in different astronomical environments such as in the interstellar medium or in the Solar System. Models of interstellar chemistry are unable to induce nitrogen…

星系天体物理 · 物理学 2020-12-15 Jean-Christophe Loison , Valentine Wakelam , Pierre Gratier , Kevin M. Hickson

Nitrogen fractionation is commonly used to assess the thermal history of Solar System volatiles. With ALMA it is for the first time possible to directly measure 14N/15N ratios in common molecules during the assembly of planetary systems. We…

星系天体物理 · 物理学 2017-02-15 V. V. Guzmán , K. I. Öberg , J. Huang , R. Loomis , C. Qi

C-fractionation has been studied from a theoretical point of view with different models of time-dependent chemistry, including both isotope-selective photodissociation and low-temperature isotopic exchange reactions. Recent chemical models…

星系天体物理 · 物理学 2020-10-05 L. Colzi , O. Sipilä , E. Roueff , P. Caselli , F. Fontani

(Abridged) The terrestrial planets, comets, and meteorites are significantly enriched in 15N compared to the Sun and Jupiter. While the solar and jovian nitrogen isotope ratio is believed to represent the composition of the protosolar…

太阳与恒星天体物理 · 物理学 2014-11-26 S. F. Wampfler , J. K. Jorgensen , M. Bizzarro , S. E. Bisschop

Our aim is to measure the interstellar 14N/15N ratio across the Galaxy, to establish a standard data set on interstellar ammonia isotope ratios, and to provide new constraints on the Galactic chemical evolution. The (J, K ) = (1, 1), (2,…

星系天体物理 · 物理学 2022-08-09 J. L. Chen , J. S. Zhang , C. Henkel , Y. T. Yan , H. Z. Yu , J. J. Qiu , X. D. Tang , J. Wang , W. Liu , Y. X. Wang , Y. H. Zheng , J. Y. Zhao , Y. P. Zou

Isotopologue abundance ratios are important to understand the evolution of astrophysical objects and ultimately the origins of a planetary system like our own. Being nitrogen a fundamental ingredient of pre-biotic material, understanding…

星系天体物理 · 物理学 2022-08-10 Silvia Spezzano , Paola Caselli , Olli Sipilä , Luca Bizzocchi

Measurements of the nitrogen isotopic ratio in Solar System comets show a constant value, ~140, which is three times lower than the protosolar ratio, a highly significant difference that remains unexplained. Observations of static starless…

星系天体物理 · 物理学 2020-11-04 P. Hily-Blant , G. Pineau des Forêts , A. Faure , D. R. Flower

We report new calculations of interstellar 15N fractionation. Previously, we have shown that large enhancements of 15N/14N can occur in cold, dense gas where CO is frozen out, but that the existence of an NH + N channel in the dissociative…

天体物理学 · 物理学 2009-11-13 S. D. Rodgers , S. B. Charnley

Aims: The two stable isotopes of nitrogen, 14N and 15N, exhibit a range of abundance ratios both inside and outside the solar system. The elemental ratio in the solar neighborhood is 440. Recent ALMA observations showed HCN/HC15N ratios…

太阳与恒星天体物理 · 物理学 2018-07-18 Ruud Visser , Simon Bruderer , Paolo Cazzoletti , Stefano Facchini , Alan N. Heays , Ewine F. van Dishoeck

The line intensities of the fundamental rotational transitions of H13CN and HC15N were observed towards two prestellar cores, L183 and L1544, and lead to molecular isotopic ratios 140 6 14N/15N 6 250 and 140 6 14N/15N 6 360, respectively.…

星系天体物理 · 物理学 2015-06-15 Pierre Hily-Blant , Lydie Bonal , Alexandre Faure , Eric Quirico

Understanding the origin of the composition of solar system cosmomaterials is a central question, not only in the cosmochemistry and astrochemistry fields, and requires various approaches to be combined. Measurements of isotopic ratios in…

星系天体物理 · 物理学 2013-08-21 Pierre Hily-Blant , G. Pineau Des Forêts , Alexandre Faure , Romane Le Gal , Marco Padovani

Interstellar objects provide a unique opportunity to further our understanding of the planetary formation process by studying in detail material formed around another star. Their ices contain precious clues about the environment and…

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