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(Abridged) The water deuterium fractionation (HDO/H$_2$O abundance ratio) has traditionally been used to infer the amount of water brought to Earth by comets. Measuring this ratio in deeply-embedded low-mass protostars makes it possible to…

太阳与恒星天体物理 · 物理学 2015-06-18 M. V. Persson , J. K. Jørgensen , E. F. van Dishoeck , D. Harsono

Recent interferometer observations have found that the D2O/HDO abundance ratio is higher than that of HDO/H2O by about one order of magnitude in the vicinity of low-mass protostar NGC 1333-IRAS 2A, where water ice has sublimated. Previous…

星系天体物理 · 物理学 2016-02-10 K. Furuya , E. F. van Dishoeck , Y. Aikawa

Although deuterium enrichment of water may provide an essential piece of information in the understanding of the formation of comets and protoplanetary systems, only a few studies up to now have aimed at deriving the HDO/H2O ratio in…

星系天体物理 · 物理学 2015-03-17 F. -C. Liu , B. Parise , L. Kristensen , R. Visser , E. F. van Dishoeck , R. Güsten

The deuterium fractionation of water can serve as a tracer for the chemical and physical evolution of water during star formation and can constrain the origin of water in Solar System bodies. We determine the HDO/H$_2$O ratio in the inner…

太阳与恒星天体物理 · 物理学 2019-10-16 S. S. Jensen , J. K. Jørgensen , L. E. Kristensen , K. Furuya , A. Coutens , E. F. van Dishoeck , D. Harsono , M. V. Persson

Water is a very abundant molecule in star-forming regions. Its deuterium fractionation is an important tool for understanding its formation and evolution during the star and planet formation processes. While the HDO/H$_2$O ratio has been…

Water plays a crucial role both in the interstellar medium and on Earth. To constrain its formation mechanisms and its evolution through the star formation process, the determination of the water deuterium fractionation ratios is…

太阳与恒星天体物理 · 物理学 2015-06-22 Audrey Coutens , Jes Jørgensen , Magnus Persson , Ewine van Dishoeck , Charlotte Vastel , Vianney Taquet

The [HDO]/[H2O] ratio is a crucial parameter for probing the history of water formation. So far, it has been measured for only three solar type protostars and yielded different results, possibly pointing to a substantially different history…

We report the first detection of the ground transition of the deuterated water at 464 GHz in the young proto-planetary disk surrounding the solar type protostar DM Tau. The line is observed in absorption against the continuum from the cold…

天体物理学 · 物理学 2009-11-13 C. Ceccarelli , C. Dominik , E. Caux , B. Lefloch , P. Caselli

The HDO/H2O ratio is a powerful diagnostic to understand the evolution of water from the first stages of star formation to the formation of planets and comets. Our aim is to determine precisely the abundance distribution of HDO towards the…

Recent observations of the HDO/H$_2$O ratio toward protostars in isolated and clustered environments show an apparent dichotomy, where isolated sources show higher D/H ratios than clustered counterparts. Establishing which physical and…

星系天体物理 · 物理学 2021-05-12 S. S. Jensen , J. K. Jørgensen , K. Furuya , T. Haugbølle , Y. Aikawa

The HDO/H2O abundance ratio is thought to be a key diagnostic on the evolution of water during the star- and planet-formation process and thus on its origin on Earth. We here present millimeter-wavelength high angular resolution…

太阳与恒星天体物理 · 物理学 2015-05-20 Jes K. Jorgensen , Ewine F. van Dishoeck

This work aims to utilize the increased sensitivity and resolution of the JWST to quantify the HDO/H$_{2}$O ratio in ices toward young stellar objects (YSOs) and to determine if the HDO/H$_{2}$O ratios measured in the gas phase toward…

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…

Water is an important molecule in the chemical and thermal balance of dense molecular gas, but knowing its history through-out the various stages of the star formation is a fundamental problem. Its molecular deuteration provides us with a…

太阳与恒星天体物理 · 物理学 2015-12-16 David Quénard , Vianney Taquet , Charlotte Vastel , Paola Caselli , Cecilia Ceccarelli

We present the modeling results of deuterium fractionation of water ice, H2, and the primary deuterium isotopologues of H3+ adopting physical conditions associated with the star and planet formation process. We calculated the deuterium…

星系天体物理 · 物理学 2015-06-23 Jeong-Eun Lee , Edwin A. Bergin

Context. Millimetric observations have measured high degrees of molecular deuteration in several species seen around low-mass protostars. The Herschel Space Telescope, launched in 2009, is now providing new measures of the deuterium…

The origin of Earth oceans is controversial. Earth could have acquired its water either from hydrated silicates (wet Earth scenario) or from comets (dry Earth scenario). [HDO]/[H2O] ratios are used to discriminate between the scenarios.…

地球与行星天体物理 · 物理学 2015-05-14 Wing-Fai Thi , Peter Woitke , Inga Kamp

Observations of star forming environments revealed that the abundances of some deuterated interstellar molecules are markedly larger than the cosmic D/H ratio of 10-5. Possible reasons for this pointed to grain surface chemistry. How- ever,…

太阳与恒星天体物理 · 物理学 2015-05-28 S. Cazaux , P. Caselli , M. Spaans

Although water is an essential and widespread molecule in star-forming regions, its chemical formation pathways are still not very well constrained. Observing the level of deuterium fractionation of OH, a radical involved in the water…

星系天体物理 · 物理学 2015-06-04 B. Parise , F. Du , F. -C. Liu , A. Belloche , H. Wiesemeyer , R. Güsten , K. M. Menten , H. W. Hübers , B. Klein

We investigate the delivery of regular and deuterated forms of water from prestellar cores to circumstellar disks. We adopt a semi-analytical axisymmetric two-dimensional collapsing core model with post-processing gas-ice astrochemical…

星系天体物理 · 物理学 2017-03-01 K. Furuya , M. N. Drozdovskaya , R. Visser , E. F. van Dishoeck , C. Walsh , D. Harsono , U. Hincelin , V. Taquet
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