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Deuterium fractionation is highly efficient during the early stages of star formation, particularly in starless and prestellar cores where temperatures are low (<10 K) and molecular freeze-out onto dust grains is significant. Methanol forms…

Understanding the chemical processes during starless core and prestellar core evolution is an important step in understanding the initial stages of star and disk formation. This project is a study of deuterated ammonia, o-NH$_2$D, in the…

Formamide (NH$_2$CHO) has previously been detected in several star-forming regions and is thought to be a precursor for different prebiotic molecules. Its formation mechanism is still debated, however. Observations of formamide, related…

Methyl formate, HCOOCH$_3$, and many of its isotopologues have been detected in astrophysical regions with considerable abundances. However, the recipe for the formation of this molecule and its isotopologues is not yet known. In this work,…

Astrophysics of Galaxies · Physics 2021-06-30 Zainab Awad , Audrey Coutens , Serena Viti , Jonathan Holdship

The level of isotopic fractionation in molecules provides insights into their formation environments and how they formed. In this article, we review hydrogen and nitrogen isotopic fractionation in low-mass star-forming regions. Interstellar…

Astrophysics of Galaxies · Physics 2018-09-12 Kenji Furuya

High levels of deuterium fractionation of $\rm N_2H^+$ (i.e., $\rm D_{frac}^{N_2H^+} \gtrsim 0.1$) are often observed in pre-stellar cores (PSCs) and detection of $\rm N_2D^+$ is a promising method to identify elusive massive PSCs. However,…

Astrophysics of Galaxies · Physics 2021-01-13 Chia-Jung Hsu , Jonathan C. Tan , Matthew D. Goodson , Paola Caselli , Bastian Körtgen , Yu Cheng

We present new models of the deuterium chemistry in protoplanetary disks, including, for the first time, multiply deuterated species. We use these models to explore whether observations in combination with models can give us clues as to…

Astrophysics · Physics 2011-02-11 K. Willacy

Molecular deuteration is a powerful diagnostic tool for probing the physical conditions and chemical processes in astrophysical environments. In this work, we focus on formaldehyde deuteration in the protobinary system NGC\,1333 IRAS\,4A,…

The Caltech Submillimeter Observatory has detected triply deuterated ammonia, ND3, through its 10a-00s transition near 310 GHz. Emission is found in the NGC 1333 region, both towards IRAS 4A and a position to the South-East where DCO+…

Understanding water deuterium fractionation is important for constraining the mechanisms of water formation in interstellar clouds. Observations of HDO and H$_2^{18}$O transitions were carried out towards the high-mass star-forming region…

We present VLA NH3 and PdBI NH2D and H13NC observations of the star forming core ahead of HH 80N, the optically obscured northern counterpart of the Herbig-Haro objects HH 80/81. The main goal is to determine the kinematical information of…

Solar and Stellar Astrophysics · Physics 2015-06-16 Josep M. Masqué , Josep M. Girart , Guillem Anglada , Mayra Osorio , Robert Estalella , Maria T. Beltrán

We present N2D+ 3-2 (IRAM) and H2D+ 1_11 - 1_10 and N2H+ 4-3 (JCMT) maps of the small cluster-forming Ophiuchus B2 core in the nearby Ophiuchus molecular cloud. In conjunction with previously published N2H+ 1-0 observations, the N2D+ data…

Astrophysics of Galaxies · Physics 2015-05-19 R. K. Friesen , J. Di Francesco , P. C. Myers , A. Belloche , Y. L. Shirley , T. L. Bourke , P. André

Infrared Dark Clouds (IRDCs) are cold, dense regions that are usually found within Giant Molecular Clouds (GMCs). Ongoing star formation within IRDCs is typically still deeply embedded within the surrounding molecular gas. Characterising…

Astrophysics of Galaxies · Physics 2016-03-09 A. T. Barnes , S. Kong , J. C. Tan , J. D. Henshaw , P. Caselli , I. Jimenez-Serra , F. Fontani

Deuterium was primarily created during the Big Bang Nucleosynthesis (BBN). This fact, alongside its fractionation reactions resulting in enhanced abundances of deuterated molecules, means that these abundances can be used to better…

Astrophysics of Galaxies · Physics 2025-01-08 J. Butterworth , S. Martín , V. M. Rivilla , S. Viti , R. Aladro , L. Colzi , F. Fontani , N. Harada , C. Henkel , I. Jiménez-Serra

Prestellar cores represent the initial conditions of star formation, but heavy molecules such as CO are strongly depleted in their cold, dense interiors, limiting the ability to probe core centers. Deuterated molecular ions therefore emerge…

Context: In the centre of pre-stellar cores, the deuterium fractionation is enhanced due to the cold temperatures and high densities. Therefore, the chemistry of deuterated molecules can be used to probe the evolution and the kinematics in…

Astrophysics of Galaxies · Physics 2022-08-24 K. Giers , S. Spezzano , F. Alves , P. Caselli , E. Redaelli , O. Sipilä , M. Ben Khalifa , L. Wiesenfeld , S. Brünken , L. Bizzocchi

Deuterium enhancement of monodeuterated species has been recognized for more than 30 years as a result of the chemical fractionation that results from the difference in zero point energies of deuterated and hydrogenated molecules. The key…

Astrophysics · Physics 2009-11-11 Charlotte Vastel , T. G. Phillips , P. Caselli , C. Ceccarelli , L. Pagani

We have conducted the first extensive observational survey of several deuterated species in 16 Class 0/I proto-brown dwarfs (proto-BDs) and 4 Class Flat/Class II brown dwarfs. Observations were obtained with the IRAM 30m telescope in the…

Solar and Stellar Astrophysics · Physics 2022-02-02 B. Riaz , W. -F. Thi

Pre-stellar cores are the first steps in the process of star and planet formation. However, the dynamical and chemical evolution of pre-stellar cores is still not well understood. We aim at estimating the central density of the pre-stellar…

Astrophysics of Galaxies · Physics 2025-02-05 S. Spezzano , E. Redaelli , P. Caselli , O. Sipilä , J. Harju , F. Lique , D. Arzoumanian , J. E. Pineda , F. Wyrowski , A. Belloche

Although chemical models predict that the deuterium fractionation in N$_2$H$^+$ is a good evolutionary tracer in the star formation process, the fractionation of nitrogen is still a poorly understood process. Recent models have questioned…

Solar and Stellar Astrophysics · Physics 2018-02-28 M. De Simone , F. Fontani , C. Codella , C. Ceccarelli , B. Lefloch , R. Bachiller , A. López-Sepulcre , E. Caux , C. Vastel , J. Soldateschi