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Related papers: Evidence for a Snow Line Beyond the Transitional R…

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Water is key in the evolution of protoplanetary disks and the formation of comets and icy/water planets. While high excitation water lines originating in the hot inner disk have been detected in several T Tauri stars (TTSs), water vapor…

A snow-line is the region of a protoplanetary disk at which a major volatile, such as water or carbon monoxide, reaches its condensation temperature. Snow-lines play a crucial role in disk evolution by promoting the rapid growth of…

Molecular snow lines in protoplanetary disks have been studied theoretically for decades because of their importance in shaping planetary architectures and compositions. The water snow line lies in the planet formation region at < 10 AU,…

Earth and Planetary Astrophysics · Physics 2015-12-16 Andrea Banzatti , Paola Pinilla , Luca Ricci , Klaus M. Pontoppidan , Til Birnstiel , Fred Ciesla

We present deep Herschel-PACS spectroscopy of far-infrared water lines from a sample of four protoplanetary disks around solar-mass stars, selected to have strong water emission at mid-infrared wavelengths. By combining the new Herschel…

Water is a molecule that is tightly related to many facets of star and planet formation. Water's abundance and distribution, especially the location of it's snowline has thus been the subject of much study. While water is seen to be…

Earth and Planetary Astrophysics · Physics 2021-09-08 Arthur D. Bosman , Edwin A. Bergin

Context. This paper discusses the sensitivity of water lines to chemical processes and radiative transfer for the protoplanetary disk around TW Hya. The study focuses on the Herschel spectral range in the context of new line detections with…

Solar and Stellar Astrophysics · Physics 2015-06-16 I. Kamp , W. -F. Thi , G. Meeus , P. Woitke , C. Pinte , R. Meijerink , M. Spaans , I. Pascucci , G. Aresu , W. R. F. Dent

The FU Orionis star V883 Ori provides a unique opportunity to probe the water snowline in a protoplanetary disk. During an accretion burst, the enhanced stellar luminosity heats the disk, sublimating ices and bringing volatile species into…

The water ice or snow line is one of the key properties of protoplanetary disks that determines the water content of terrestrial planets in the habitable zone. Its location is determined by the properties of the star, the mass accretion…

Earth and Planetary Astrophysics · Physics 2015-05-15 Gijs D. Mulders , Fred J. Ciesla , Michiel Min , Ilaria Pascucci

Circumstellar disks provide the material reservoir for the growth of young stars and for planet formation. We combine a high-level radiative transfer program with a thermal-chemical model of a typical T Tauri star disk to investigate the…

Astrophysics · Physics 2009-11-13 R. Meijerink , D. R. Poelman , M. Spaans , A. G. G. M. Tielens , A. E. Glassgold

We have developed a new model for the astrochemical structure of a viscously evolving protoplanetary disk that couples an analytic description of the disk's temperature and density profile, chemical evolution, and an evolving dust…

Earth and Planetary Astrophysics · Physics 2016-11-10 Alex J. Cridland , Ralph E. Pudritz , Tilman Birnstiel

We re-examine the constraints provided by Herschel Space Observatory data regarding cold water emission from protoplanetary disks. Previous disk models that were used to interpret observed water emission concluded that oxygen (O/H) is…

Earth and Planetary Astrophysics · Physics 2024-06-10 Maxime Ruaud , Uma Gorti

The low water content of the terrestrial planets in the solar system suggests that the protoplanets formed within the water snow line. Accurate prediction of the snow line location moving with time provides a clue to constrain the formation…

Earth and Planetary Astrophysics · Physics 2021-08-11 Shoji Mori , Satoshi Okuzumi , Masanobu Kunitomo , Xue-Ning Bai

Inside the H$_{2}$O snowline of protoplanetary disks, water evaporates from the dust-grain surface into the gas phase, whereas it is frozen out on to the dust in the cold region beyond the snowline. H$_{2}$O ice enhances the solid material…

Earth and Planetary Astrophysics · Physics 2016-08-24 Shota Notsu , Hideko Nomura , Daiki Ishimoto , Catherine Walsh , Mitsuhiko Honda , Tomoya Hirota , T. J. Millar

The study of warm molecular gas in the inner regions of protoplanetary disks is of key importance for the study of planet formation and especially for the transport of H2O and organic molecules to the surfaces of rocky planets/satellites.…

Earth and Planetary Astrophysics · Physics 2014-11-20 R. Meijerink , K. M. Pontoppidan , G. A. Blake , D. R. Poelman , C. P. Dullemond

Nitrogen chemistry in protoplanetary disks and the freeze-out on dust particles is key to understand the formation of nitrogen bearing species in early solar system analogs. So far, ammonia has not been detected beyond the snowline in…

Water is one of the central molecules for the formation and habitability of planets. In particular, the region where water freezes-out, the water snowline, could be a favorable location to form planets in protoplanetary disks. We use high…

Earth and Planetary Astrophysics · Physics 2026-02-13 M. Leemker , S. Facchini , P. Curone , L. Rampinelli , M. Benisty , A. Garufi , E. Humphreys

We performed very deep searches for 2 ground-state water transitions in 13 protoplanetary disks with the HIFI instrument on-board the Herschel Space Observatory, with integration times up to 12 hours per line. Two other water transitions…

The snow line in a protoplanetary disk demarcates regions with H$_2$O ice from regions with H$_2$O vapor. Where a planet forms relative to this location determines how much water and other volatiles it forms with. Giant planet formation may…

Earth and Planetary Astrophysics · Physics 2019-04-17 Anusha Kalyaan , Steven J. Desch

We present Herschel Space Observatory PACS spectra of T Tauri stars, in which we detect amorphous and crystalline water ice features. Using irradiated accretion disk models, we determine the disk structure and ice abundance in each of the…

Earth and Planetary Astrophysics · Physics 2015-06-23 M. K. McClure , C. Espaillat , N. Calvet , E. Bergin , P. D'Alessio , D. M. Watson , P. Manoj , B. Sargent , L. I. Cleeves

Evolution of a snow line in an optically-thick protoplanetary disk is investigated with numerical simulations. The ice-condensing region in the disk is obtained by calculating the temperature and the density with the 1+1D approach. The snow…

Earth and Planetary Astrophysics · Physics 2015-05-28 Akinori Oka , Taishi Nakamoto , Shigeru Ida
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