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Related papers: Deuterated methanol in the pre-stellar core L1544

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The study of deuteration in pre-stellar cores is important to understand the physical and chemical initial conditions in the process of star formation. In particular, observations toward pre-stellar cores of methanol and deuterated…

The deuteration of molecules forming in the ices such as methanol (CH$_3$OH) is sensitive to the physical conditions during their formation in dense cold clouds and can be probed through observations of deuterated methanol in hot cores.…

Isotopic fractionation is a very powerful tool to follow the evolution of material from one stage to the next in the star-formation process. Pre-stellar cores exhibit some of the highest levels of deuteration because their physical…

Astrophysics of Galaxies · Physics 2026-02-20 S. Spezzano , W. Riedel , P. Caselli , O. Sipilä , Y. Lin , H. A. Bunn , E. Redaelli , L. H. Coudert , A. Megías , I. Jimenez-Serra

The inheritance of material across the star and planet formation process is traced by deuterium fractionation. We report here the first detection of doubly deuterated methanol towards pre-stellar cores. We study the deuterium fractionation…

Astrophysics of Galaxies · Physics 2023-01-11 Yuxin Lin , Silvia Spezzano , Paola Caselli

Aims. We aim to improve a previous model for the prediction of column densities and deuterium fractions of non- and singly deuterated methanol. Thereby, we try to identify crucial chemical and physical parameters, for which the study of…

Astrophysics of Galaxies · Physics 2023-12-20 W. Riedel , O. Sipilä , E. Redaelli , P. Caselli , A. I. Vasyunin , F. Dulieu , N. Watanabe

We report the first detection of triply-deuterated methanol, with 12 observed transitions, towards the low-mass protostar IRAS 16293-2422, as well as multifrequency observations of 13CH3OH, used to derive the column density of the main…

Astrophysics · Physics 2007-05-23 B. Parise , A. Castets , E. Herbst , E. Caux , C. Ceccarelli , I. Mukhopadhyay , A. G. G. M. Tielens

Recent observations indicate that organic molecules are prevalent towards starless and prestellar cores. Deuteration of these molecules has not been well-studied during the starless phase. Published observations of singly-deuterated…

Astrophysics of Galaxies · Physics 2020-12-02 Hannah E. Ambrose , Yancy L. Shirley , Samantha Scibelli

Context: Methanol is thought to be mainly formed during the prestellar phase and its deuterated form keeps memory of the conditions at that epoch. Thanks to the unique combination of high angular resolution and sensitivity provided by ALMA,…

The isotopic ratios of deuterated methanol derived around protostars are commonly used to infer the physical conditions under which they formed in the earlier prestellar stage. However, there is a discrepancy in the ratio of the singly…

We investigate the deuteration of methanol towards the high-mass star forming region NGC 7538-IRS1. We have carried out a multi-transition study of CH$_3$OH, $^{13}$CH$_3$OH and of the deuterated fllavors, CH$_2$DOH and CH$_3$OD, between…

Deuterated molecules have been detected and studied toward Orion BN/KL in the past decades, mostly with single-dish telescopes. However, high angular resolution data are critical not only for interpreting the spatial distribution of the…

Astrophysics of Galaxies · Physics 2015-06-05 T. -C. Peng , D. Despois , N. Brouillet , B. Parise , A. Baudry

Pre-stellar cores are the basic unit for the formation of stars and stellar systems. The anatomy of the physical and chemical structures of pre-stellar cores is critical for understanding the star formation process. L1544 is a prototypical…

Astrophysics of Galaxies · Physics 2022-09-21 Yuxin Lin , Silvia Spezzano , Olli Sipilä , Anton Vasyunin , Paola Caselli

We report the first detection of doubly-deuterated methanol (CHD2OH), as well as firm detections of the two singly-deuterated isotopomers of methanol (CH2DOH and CH3OD), towards the solar-type protostar IRAS16293-2422. From the present…

In the centre of pre-stellar cores, deuterium fractionation is enhanced due to the low temperatures and high densities. Therefore, the chemistry of deuterated molecules can be used to study the earliest stages of star formation. We analyse…

Astrophysics of Galaxies · Physics 2023-08-16 K. Giers , S. Spezzano , P. Caselli , E. Wirström , O. Sipilä , J. E. Pineda , E. Redaelli , C. T. Bop , F. Lique

Deuterium fractionation, as studied through mono-deuterated methanol, is frequently used as a diagnostic tool to trace the physical conditions and chemical evolution of interstellar sources. This study investigates methanol deuteration in…

Solar and Stellar Astrophysics · Physics 2025-06-10 Shaoshan Zeng , Jae-Hong Jeong , Takahiro Oyama , Jeong-Eun Lee , Yao-Lun Yang , Nami Sakai

The abundance of deuterated molecules in a star-forming region is sensitive to the environment in which they are formed. Deuteration fractions therefore provide a powerful tool for studying the physical and chemical evolution of a…

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

The relative abundances of singly-deuterated methanol isotopologues, [CH$_{2}$DOH]/[CH$_{3}$OD], in star-forming regions deviate from the statistically expected ratio of 3. In Orion KL, the nearest high-mass star-forming region to Earth,…

Astrophysics of Galaxies · Physics 2022-10-12 Olivia H. Wilkins , Geoffrey A. Blake

Deuterated molecules are a useful diagnostic tool to probe the evolution and the kinematics in the earliest stages of star formation. Due to the low temperatures and high densities in the centre of pre-stellar cores, the deuterium fraction…

Astrophysics of Galaxies · Physics 2026-01-23 K. Giers , S. Spezzano , Y. Lin , P. Caselli , O. Sipilä
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