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(English) In this lecture I discuss recent progress in the understanding of the chemical evolution of protoplanetary disks that resemble our Solar system during the first ten million years. At the verge of planet formation, strong…

Astrophysics of Galaxies · Physics 2012-02-27 Dmitry A. Semenov

The core accretion theory for giant planet formation predicts enrichment of elemental abundances in planetary envelopes caused by runaway accretion of planetesimals, which is consistent with measured super-solar abundances of C, N, P, S,…

Earth and Planetary Astrophysics · Physics 2015-06-22 Nikku Madhusudhan , Nicolas Crouzet , Peter R. McCullough , Drake Deming , Christina Hedges

The composition of a planet's atmosphere is determined by its formation, evolution, and present-day insolation. A planet's spectrum therefore may hold clues on its origins. We present a "chain" of models, linking the formation of a planet…

Earth and Planetary Astrophysics · Physics 2016-11-23 Christoph Mordasini , Roy van Boekel , Paul Mollière , Thomas Henning , Björn Benneke

In protoplanetary disks, small mm-cm-sized pebbles drift inwards which can aid planetary growth and influence the chemical composition of their natal disks. Gaps in protoplanetary disks can hinder the effective inward transport of pebbles…

Earth and Planetary Astrophysics · Physics 2024-10-30 Mark Eberlein , Bertram Bitsch , Ravit Helled

Transit spectroscopy of terrestrial planets around nearby M dwarfs is a primary goal of space missions in coming decades. 3-D climate modeling has shown that slow-synchronous rotating terrestrial planets may develop thick clouds at the…

We present the results of models of the chemistry, including deuterium, in the inner regions of protostellar disks. We find good agreement with recent gas phase observations of several (non--deuterated) species. We also compare our results…

Solar and Stellar Astrophysics · Physics 2015-05-13 K. Willacy , P. Woods

Mid-infrared spectroscopy of protoplanetary disks provides a chemical inventory of gas within a few au, where planets are readily detected around older stars. With the JWST Disk Infrared Spectral Chemistry Survey (JDISCS), we explore…

Water ice is important for the evolution and preservation of life. Identifying the distribution of water ice in debris disks is therefore of great interest in the field of astrobiology. Furthermore, icy dust grains are expected to play…

Earth and Planetary Astrophysics · Physics 2019-09-18 Minjae Kim , Sebastian Wolf , Alexey Potapov , Harald Mutschke , Cornelia Jäger

Aims: Our aim is to determine the critical parameters in water chemistry and the contribution of water to the oxygen budget by observing and modelling water gas and ice for a sample of eleven low-mass protostars, for which both forms of…

Astrophysics of Galaxies · Physics 2014-12-03 M. Schmalzl , R. Visser , C. Walsh , T. Albertsson , E. F. van Dishoeck , L. E. Kristensen , J. C. Mottram

Water content and the internal evolution of terrestrial planets and icy bodies are closely linked. The distribution of water in planetary systems is controlled by the temperature structure in the protoplanetary disk and dynamics and…

Earth and Planetary Astrophysics · Physics 2018-02-21 Julien Monteux , Gregor J. Golabek , David C. Rubie , Gabriel Tobie , Edward D. Young

The elemental composition of the gas and dust in a protoplanetary disk influences the compositions of the planets that form in it. We use the Molecules with ALMA at Planet-forming Scales (MAPS) data to constrain the elemental composition of…

(abridged) Data and results from the WISH key program are summarized, designed to provide a legacy data set to address its physics and chemistry. WISH targeted ~80 sources along the two axes of luminosity and evolutionary stage: from low-…

Astrophysics of Galaxies · Physics 2021-04-14 E. F. van Dishoeck , L. E. Kristensen , the WISH team

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

This work presents theoretical studies which combine aspects of combustion and explosion theory with exoplanetary atmospheric science. Super Earths could possess a large amount of molecular hydrogen depending on disk, planetary and stellar…

Earth and Planetary Astrophysics · Physics 2018-07-18 John Lee Grenfell , Stefanie Gebauer , Mareike Godolt , Barbara Stracke , Ralph Lehmann , Heike Rauer

We present results from a model of the chemical evolution of protoplanetary disks. In our models we directly calculate the changing propagation and penetration of a high energy radiation field with Lyman alpha radiation included. We also…

Solar and Stellar Astrophysics · Physics 2015-05-20 Jeffrey K. J. Fogel , Thomas J. Bethell , Edwin A. Bergin , Nuria Calvet , Dmitry Semenov

Recently there has been tremendous increase in the number of identified extra-solar planetary systems. Our understanding of their formation is tied to exoplanet internal structure models, which rely upon equations of state of light elements…

Earth and Planetary Astrophysics · Physics 2015-06-03 M. D. Knudson , M. P. Desjarlais , R. W. Lemke , T. R. Mattsson , M. French , N. Nettelmann , R. Redmer

This paper reviews recent observations of water in Galactic interstellar clouds and nearby galactic nuclei. Two results are highlighted: (1) Multi-line H$_2$O mapping of the Orion Bar shows that the water chemistry in PDRs is driven by…

Astrophysics of Galaxies · Physics 2015-12-01 Floris van der Tak

The chemical composition of a protoplanetary disk is determined not only by in situ chemical processes during the disk phase, but also by the history of the gas and dust before it accreted from the natal envelope. In order to understand the…

Astrophysics of Galaxies · Physics 2015-05-28 Ruud Visser , Ewine F. van Dishoeck , Steven D. Doty

The spatial distribution and evolution of gas in the inner 10 au of protoplanetary disks form the basis for estimating the initial conditions of planet formation. Among the most important constraints derived from spectroscopic observations…

Determining the locations of the major snowlines in protostellar environments is crucial to fully understand the planet formation process and its outcome. Despite being located far enough from the central star to be spatially resolved with…

Solar and Stellar Astrophysics · Physics 2018-09-12 Merel L. R. van 't Hoff
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