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Related papers: Abundant refractory sulfur in protoplanetary disks

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Sulfur is a critical element to life on Earth, and with detections of sulfur-bearing molecules in exoplanets and comets, questions arise as to how sulfur is incorporated into planets in the first place. In order to understand sulfur's…

Earth and Planetary Astrophysics · Physics 2025-10-03 Becky J. Williams , L. Ilsedore Cleeves , Rachel E. Gross , Jackson Baker

Around 2% of all A stars have photospheres depleted in refractory elements. This is hypothesized to arise from a preferential accretion of gas rather than dust, but the specific processes and the origin of the material -- circum- or…

Solar and Stellar Astrophysics · Physics 2015-10-14 Mihkel Kama , Colin P. Folsom , Paola Pinilla

Protoplanets growing within the protoplanetary disk by pebble accretion acquire hydrostatic gas envelopes. Due to accretion heating, the temperature in these envelopes can become high enough to sublimate refractory minerals which are the…

Earth and Planetary Astrophysics · Physics 2023-09-27 Marie-Luise Steinmeyer , Peter Woitke , Anders Johansen

The sulfur chemistry in protoplanetary disks influences the properties of nascent planets, including potential habitability. Although the inventory of sulfur molecules in disks has gradually increased over the last decade, CS is still the…

The accretion of icy and rocky solids during the formation of a gas giant planet is poorly constrained and challenging to model. Refractory species, like sulfur, are only present in solids in the protoplanetary disk where planets form.…

The recent detection of refractory molecules in massive star-forming regions provides a means of probing the innermost regions of disks around massive stars. These detections also make it possible to explore the chemical composition of…

Volatile elements play a crucial role in the formation of planetary systems. Their abundance and distribution in protoplanetary disks provide vital insights into the connection between formation processes and the atmospheric composition of…

Earth and Planetary Astrophysics · Physics 2023-12-22 Luke Keyte , Mihkel Kama , Ko-Ju Chuang , L. Ilsedore Cleeves , Maria N. Drozdovskaya , Kenji Furuya , Jonathan Rawlings , Oliver Shorttle

Millimeter sized dust grains experience radial velocities exceeding the gas velocities by orders of magnitude. The viscous evolution of the accretion disk adds disk material onto the central star's convective envelope, influencing its…

Earth and Planetary Astrophysics · Physics 2023-08-15 León-Alexander Hühn , Bertram Bitsch

Observations of JWST have revealed that several close-in exoplanets have sulfur-rich atmospheres through SO$_2$ detections. Atmospheric sulfur is often thought to originate from solid accretion during planet formation, whereas recent…

Earth and Planetary Astrophysics · Physics 2026-02-09 Kanon Nakazawa , Kazumasa Ohno

This second paper presents an in-depth analysis of the composition of the planetary material that has been accreted onto seven white dwarfs with circumstellar dust and gas emission discs with abundances reported in Paper I. The white dwarfs…

Earth and Planetary Astrophysics · Physics 2024-06-18 L. K. Rogers , A. Bonsor , S. Xu , A. M. Buchan , P. Dufour , B. L. Klein , S. Hodgkin , M. Kissler-Patig , C. Melis , C. Walton , A. Weinberger

The newfound ability to detect SO2 in exoplanet atmospheres presents an opportunity to measure sulfur abundances and so directly test between competing modes of planet formation. In contrast to carbon and oxygen, whose dominant molecules…

Earth and Planetary Astrophysics · Physics 2023-08-02 Ian J. M. Crossfield

Measuring the amount of gas and dust in protoplanetary disks is a key challenge in planet formation studies. Here we provide a new set of dust depletion factors and relative mass surface densities of gas and dust for the innermost regions…

Earth and Planetary Astrophysics · Physics 2022-06-29 Adam S. Jermyn , Mihkel Kama

Gas-phase sulphur bearing volatiles appear to be severely depleted in protoplanetary disks. The detection of CS and non-detections of SO and SO2 in many disks have shown that the gas in the warm molecular layer, where giant planets accrete…

Earth and Planetary Astrophysics · Physics 2021-07-14 A. S. Booth , N. van der Marel , M. Leemker , E. F. van Dishoeck , S. Ohashi

Sulfur is a volatile chemical element that plays an important role in tracing the chemical evolution of galaxies. However, its nucleosynthesis origin and abundance variations are still unclear. The goal of the present article is to…

Astrophysics of Galaxies · Physics 2021-03-31 J. Perdigon , P. de Laverny , A. Recio-Blanco , E. Fernandez-Alvar , P. Santos-Peral , G. Kordopatis , M. A. Alvarez

The physical and chemical conditions in young protoplanetary disks set the boundary conditions for planet formation. Although the dust in disks is relatively easily detected as a far-IR photometric ``excess'' over the expected photospheric…

Astrophysics of Galaxies · Physics 2015-05-14 Javier R. Goicoechea , Bruce Swinyard

The detection of a dust disc around G29-38 and transits from debris orbiting WD1145+017 confirmed that the photospheric trace metals found in many white dwarfs arise from the accretion of tidally disrupted planetesimals. The composition of…

If the photospheres of solar-type stars represent the composition of circumstellar disks from which any planets formed, spectroscopic determinations of stellar elemental abundances offer information on the composition of those planets,…

Earth and Planetary Astrophysics · Physics 2015-06-24 Eric Gaidos

A clear understanding of the chemical processing of matter, as it is transferred from a molecular cloud to a planetary system, depends heavily on knowledge of the physical conditions endured by gas and dust as these accrete onto a disk and…

Astrophysics · Physics 2007-05-23 David W. Koerner

Accretion from protoplanetary or debris disks can contaminate the stellar photosphere, which is detectable in stars with radiative envelopes due to relatively slower photospheric mixing. The contaminated photosphere reflects ongoing disk…

Solar and Stellar Astrophysics · Physics 2025-05-07 Sandipan P. D. Borthakur , Mihkel Kama , Luca Fossati , Quentin Kral , Colin P. Folsom , Johanna Teske , Anna Aret

The Sun shows a $\sim 10$% depletion in refractory elements relative to nearby solar twins. It has been suggested that this depletion is a signpost of planet formation. The exoplanet statistics are now good enough to show that the origin of…

Earth and Planetary Astrophysics · Physics 2020-03-04 Richard A. Booth , James E. Owen
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