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Related papers: The TW Hya Rosetta Stone Project IV: A hydrocarbon…

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We fit an isothermal oscillatory density model to the outer disk of TW Hya in which planets have presumably already formed and they are orbiting within four observed dark gaps. At first sight, this 52 AU small disk does not appear to be…

Earth and Planetary Astrophysics · Physics 2019-03-05 Dimitris M. Christodoulou , Demosthenes Kazanas

Protoplanetary disks, the birthplaces of planets, commonly feature bright rings and dark gaps in both continuum and line emission maps. Accreting planets are interacting with the disk, not only through gravity, but also by changing the…

Earth and Planetary Astrophysics · Physics 2023-10-04 Haochang Jiang , Yu Wang , Chris W. Ormel , Sebastiaan Krijt , Ruobing Dong

We present high resolution (0.3" = 16 AU), high signal-to-noise ratio Submillimeter Array observations of the 870 microns (345 GHz) continuum and CO J=3--2 line emission from the protoplanetary disk around TW Hya. Using continuum and line…

Over the last few years, the chemistry of molecules other than CO in the planet-forming zones of disks is starting to be explored with Spitzer and high-resolution ground-based data. However, these studies have focused only on a few simple…

Solar and Stellar Astrophysics · Physics 2015-06-12 Jeanette E. Bast , Fred Lahuis , Ewine F. van Dishoeck , Alexander G. G. M. Tielens

The $\sim$5 Myr PDS 70 is the only known system with protoplanets residing in the cavity of the circumstellar disk from which they formed, ideal for studying exoplanet formation and evolution within its natal environment. Here we report the…

Recent high resolution spectroscopic analysis of nearby FGK stars suggests that a high C/O ratio of greater than 0.8, or even 1.0, is relatively common. Two published catalogs find C/O$>0.8$ in 25-30% of systems, and C/O$>1.0$ in…

Solar and Stellar Astrophysics · Physics 2015-06-03 Jonathan J. Fortney

The C/O-ratio as traced with C$_2$H emission in protoplanetary disks is fundamental for constraining the formation mechanisms of exoplanets and our understanding of volatile depletion in disks, but current C$_2$H observations show an…

Earth and Planetary Astrophysics · Physics 2021-09-29 Nienke van der Marel , Arthur Bosman , Sebastiaan Krijt , Gijs D. Mulders , Jennifer B. Bergner

Early results from the JWST-MIRI guaranteed time programs on protostars (JOYS) and disks (MINDS) are presented. Thanks to the increased sensitivity, spectral and spatial resolution of the MIRI spectrometer, the chemical inventory of the…

The young star beta Pictoris is well known for its dusty debris disk, produced through the grinding down by collisions of planetesimals, kilometre-sized bodies in orbit around the star. In addition to dust, small amounts of gas are also…

(Abridged) Near- to mid-IR observations of protoplanetary disks show that the inner regions (<10AU) are rich in small organic volatiles (e.g., C2H2 and HCN). Trends in the data suggest that disks around cooler stars (~3000K) are potentially…

Earth and Planetary Astrophysics · Physics 2016-08-08 Catherine Walsh , Hideko Nomura , Ewine F. van Dishoeck

We present an observational and theoretical study of the primary ionizing agents (cosmic rays and X-rays) in the TW Hya protoplanetary disk. We use a set of resolved and unresolved observations of molecular ions and other molecular species,…

Solar and Stellar Astrophysics · Physics 2015-06-23 L. Ilsedore Cleeves , Edwin A. Bergin , Chunhua Qi , Fred C. Adams , Karin I. Oberg

Molecular D/H ratios are frequently used to probe the chemical past of Solar System volatiles. Yet it is unclear which parts of the Solar Nebula hosted an active deuterium fractionation chemistry. To address this question, we present…

We find a trend between the mid-infrared HCN/H2O flux ratio and submillimeter disk mass among T Tauri stars in Taurus. While it may seem puzzling that the molecular emission properties of the inner disk (< few AU) are related to the…

Solar and Stellar Astrophysics · Physics 2019-08-19 Joan R. Najita , John S. Carr , Klaus M. Pontoppidan , Colette Salyk , Ewine F. van Dishoeck , Geoffrey A. Blake

Measuring the gas mass of protoplanetary disks, the reservoir available for giant planet formation, has proven to be difficult. We currently lack a far-infrared observatory capable of observing HD, and the most common gas mass tracer, CO,…

Earth and Planetary Astrophysics · Physics 2022-02-23 L. Trapman , K. Zhang , M. R. L. van 't Hoff , M. R. Hogerheijde , E. A. Bergin

The TW Hya system is perhaps the closest analog to the early solar nebula. We have used the Very Large Array to image TW Hya at wavelengths of 7mm and 3.6 cm with resolutions 0.1 arcseconds (about 5 AU) and 1.0 arcseconds (about 50 AU),…

Astrophysics · Physics 2009-10-31 D. J. Wilner , P. T. P. Ho , J. H. Kastner , L. F. Rodriguez

Infrared observations with JWST open up a new window into the chemical composition of the gas in the inner disk (<few au) where planets are built. Results from the MIRI GTO program MINDS (PI: Th. Henning, co-PI: I. Kamp) are presented for…

Astrophysics of Galaxies · Physics 2024-12-12 E. F. van Dishoeck , the MINDS team

With the advent of JWST, we acquire unprecedented insights into the physical and chemical structure of the inner regions of planet-forming disks where terrestrial planet formation occurs. The very low-mass stars (VLMS) are known to have a…

[Abridged] Combining a time-dependent astrochemical model with a model of planet formation and migration, we compute the carbon-to-oxygen ratio (C/O) of a range of planetary embryos starting their formation in the inner solar system (1-3…

Earth and Planetary Astrophysics · Physics 2019-07-17 Alex J. Cridland , Christian Eistrup , Ewine F. van Dishoeck

To understand the role that planet formation history has on the observable atmospheric carbon-to-oxygen ratio (C/O) we have produced a population of astrochemically evolving protoplanetary disks. Based on the parameters used in a…

Earth and Planetary Astrophysics · Physics 2019-12-04 Alex J. Cridland , Ewine F. van Dishoeck , Matthew Alessi , Ralph E. Pudritz