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Related papers: CO destruction in protoplanetary disk midplanes: i…

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(abridged) We used the IRAM 30-m to perform a sensitive wideband survey of 30 protoplanetary disks in the Taurus Auriga region. We simultaneously observed HCO$^+$(3-2), HCN(3-2), C$_2$H(3-2), CS(5-4), and two transitions of SO. We combine…

Earth and Planetary Astrophysics · Physics 2016-08-17 S. Guilloteau , L. Reboussin , A. Dutrey , E. Chapillon , V. Wakelam , V. Piétu , E. Di Folco , D. Semenov , Th. Henning

We develop a simple iterative scheme to include vertical turbulent mixing and diffusion in ProDiMo thermo-chemical models for protoplanetary discs. The models are carefully checked for convergence toward the time-independent solution of the…

Earth and Planetary Astrophysics · Physics 2022-12-21 P. Woitke , A. M. Arabhavi , I. Kamp , W. -F. Thi

High spatial resolution observations of CO isotopologue line emission in protoplanetary disks at mid-inclinations (${\approx}$30-75{\deg}) allow us to characterize the gas structure in detail, including radial and vertical substructures,…

Context. The dust and gas temperature in proto-planetary disks play critical roles in determining their chemical evolution and influencing planet formation processes. Aims. We attempted an accurate measurement of the dust and CO temperature…

CO is one of the most abundant molecules in protoplanetary disks, and optically thin emission from its isotopologues has been detected in many of them. However, several past works have argued that reproducing the relatively low emission of…

Earth and Planetary Astrophysics · Physics 2023-07-17 Dingshan Deng , Maxime Ruaud , Uma Gorti , Ilaria Pascucci

CO line emission represents the most accessible and widely used tracer of the molecular interstellar medium. This renders the translation of observed CO intensity into total H2 gas mass critical to understand star formation and the…

Astrophysics of Galaxies · Physics 2015-06-12 Alberto D. Bolatto , Mark Wolfire , Adam K. Leroy

We use the moving mesh code AREPO coupled to a time-dependent chemical network to investigate the formation and destruction of molecular gas in simulated spiral galaxies. This allows us to determine the characteristics of the gas that is…

Astrophysics of Galaxies · Physics 2015-06-19 Rowan J. Smith , Simon C. O. Glover , Paul C. Clark , Ralf S. Klessen , Volker Springel

The thermal structure of protoplanetary disks is a fundamental characteristic of the system that has wide reaching effects on disk evolution and planet formation. In this study, we constrain the 2D thermal structure of the protoplanetary…

The chemical composition of gas and ice in disks around young stars set the bulk composition of planets. In contrast to protoplanetary disks (Class II), young disks that are still embedded in their natal envelope (Class 0 and I) are…

Previous observations revealed the existence of CO gas at nearly protoplanetary level in several dust-rich debris disks around young A-type stars. Here we used the ALMA 7m-array to measure $^{13}$CO and C$^{18}$O emission toward two debris…

We observed HCO$^+$ $J=1-0$ and H$^{13}$CO$^+$ $J=1-0$ emission towards the five protoplanetary disks around IM Lup, GM Aur, AS 209, HD 163296, and MWC 480 as part of the MAPS project. HCO$^+$ is detected and mapped at…

Emission substructures in gas and dust are common in protoplanetary disks. Such substructures can be linked to planet formation or planets themselves. We explore the observed gas substructures in AS 209 using thermochemical modeling with…

We present a large, comprehensive survey of rovibrational CO line emission at 4.7 micron from 69 protoplanetary disks, obtained with CRIRES on the ESO Very Large Telescope at the highest available spectral resolving power (R=95,000, v=3.2…

Solar and Stellar Astrophysics · Physics 2015-06-15 Joanna M. Brown , Klaus M. Pontoppidan , Ewine F. van Dishoeck , Gregory J. Herczeg , Geoffrey A. Blake , Alain Smette

We investigate the gas-phase and grain-surface chemistry in the inner 30 AU of a typical protoplanetary disk using a new model which calculates the gas temperature by solving the gas heating and cooling balance and which has an improved…

Astrophysics · Physics 2011-02-11 Paul M. Woods , Karen Willacy

Resolved molecular line observations are essential for gaining insight into the physical and chemical structure of protoplanetary disks, particularly in cold, dense regions where planets form and acquire their chemical compositions.…

Turbulence is the leading candidate for angular momentum transport in protoplanetary disks and therefore influences disk lifetimes and planet formation timescales. However, the turbulent properties of protoplanetary disks are poorly…

Earth and Planetary Astrophysics · Physics 2017-12-13 Mo Yu , Neal J. Evans , Sarah E. Dodson-Robinson , Karen Willacy , Neal J. Turner

Ionization drives important chemical and dynamical processes within protoplanetary disks, including the formation of organics and water in the cold midplane and the transportation of material via accretion and magneto-hydrodynamic (MHD)…

Star formation often occurs within or nearby stellar clusters. Irradiation by nearby massive stars can photoevaporate protoplanetary disks around young stars (so-called proplyds) which raises questions regarding the ability of planet…

Astrophysics of Galaxies · Physics 2013-03-21 Catherine Walsh , T. J. Millar , Hideko Nomura

The faint CO gases in debris disks are easily dissolved into C by UV irradiation, while CO can be reformed via reactions with hydrogen. The abundance ratio of C/CO could thus be a probe of the amount of hydrogen in the debris disks. We…

Earth and Planetary Astrophysics · Physics 2023-06-14 Kazunari Iwasaki , Hiroshi Kobayashi , Aya E. Higuchi , Yuri Aikawa

The detection of gas in debris disks raises the question of whether this gas is a remnant from the primordial protoplanetary phase, or released by the collision of secondary bodies. In this paper we analyze ALMA observations at 1-1.5"…

Solar and Stellar Astrophysics · Physics 2019-06-26 Antonio Hales , Uma Gorti , John Carpenter , Meredith Hughes , Kevin Flaherty
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