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According to the current paradigm of circumstellar disk evolution, gas-rich primordial disks evolve into gas-poor debris disks compose of second-generation dust. To explore the transition between these phases, we searched for $^{12}$CO,…

太阳与恒星天体物理 · 物理学 2017-11-15 A. Moór , M. Curé , Á. Kóspál , P. Ábrahám , T. Csengeri , C. Eiroa , D. Gunawan , Th. Henning , A. M. Hughes , A. Juhász , N. Pawellek , M. Wyatt

Dust particles in protoplanetary disks, lacking support from pressure, rotate at velocities exceeding those of the surrounding gas. Consequently, they experience a head-wind from the gas that drives them toward the central star. Radial…

地球与行星天体物理 · 物理学 2024-05-08 Fabiola Antonietta Gerosa , Jérémie Bec , Héloïse Méheut , Anand Utsav Kapoor

Observations of CO isotopologue emission from protoplanetary disks at millimeter wavelengths are a powerful tool for probing the CO snowline, an important marker for disk chemistry, and also for estimating total disk gas mass, a key…

地球与行星天体物理 · 物理学 2024-12-05 Chunhua Qi , David J. Wilner

The chemical inventory of protoplanetary midplanes is the basis for forming planetesimals. Among them, solid-state reactions based on CO/CO$_2$ toward molecular complexity on interstellar dust grains have been studied in theoretical and…

太阳与恒星天体物理 · 物理学 2023-10-31 K. -J. Chuang , C. Jaeger , N. -E. Sie , C. -H. Huang , C. -Y. Lee , Y. -Y. Hsu , Th. Henning , Y. -J. Chen

In an ongoing effort to understand planet formation the link between the chemistry of the protoplanetary disk and the properties of resulting planets have long been a subject of interest. These connections have generally been made between…

地球与行星天体物理 · 物理学 2025-01-08 Alex J. Cridland , Elena Lega , Myriam Benisty

Empirical constraints of fundamental properties of protoplanetary disks are essential for understanding planet formation and planetary properties (1,2). Carbon monoxide (CO) gas is often used to constrain disk properties (3). However,…

地球与行星天体物理 · 物理学 2022-08-31 Diana Powell , Peter Gao , Ruth Murray-Clay , Xi Zhang

The complex interplay between the growth, drift, and sublimation of ice-covered pebbles can strongly influence the volatile distribution and evolution of disc composition, and therefore impact the composition of forming planets. Classic…

地球与行星天体物理 · 物理学 2025-12-03 Joe Williams , Sebastiaan Krijt , Bertram Bitsch , Adrien Houge , Jennifer Bergner

The spatial distribution of the chemical reservoirs in protoplanetary disks is key to elucidate the composition of planets, especially habitable ones. However, the partitioning of the main elements among the refractory and volatile phases…

地球与行星天体物理 · 物理学 2026-03-16 M. Gaillard , A. Faure , P. Hily-Blant , R. Le Gal , S. Lee , H. Nomura , K. Furuya

Observations of protoplanetary discs have revealed dust rings which are likely due to the presence of pressure bumps in the disc. Because these structures tend to trap drifting pebbles, it has been proposed that pressure bumps may play an…

地球与行星天体物理 · 物理学 2024-02-09 Arnaud Pierens , Sean N. Raymond

Recent surveys have revealed that protoplanetary discs typically have dust masses that appear to be insufficient to account for the high occurrence rate of exoplanet systems. We demonstrate that this observed dust depletion is consistent…

地球与行星天体物理 · 物理学 2020-09-30 Johan Appelgren , Michiel Lambrechts , Anders Johansen

Large-scale vortices in protoplanetary disks are thought to form and survive for long periods of time. Hence, they can significantly change the global disk evolution and particularly the distribution of the solid particles embedded in the…

地球与行星天体物理 · 物理学 2017-09-20 P. Barge , L. Ricci , C. L. Carilli , R. Previn-Ratnasingam

Polycyclic Aromatic Hydrocarbons (PAHs) are commonly detected in protoplanetary disks, but it is unclear what causes the wide range of intensities across the samples. In this work, the measured PAH intensities of a range of disks are…

地球与行星天体物理 · 物理学 2026-02-18 Nienke van der Marel , Niels F. W. Ligterink , Ryan van der Werf , Milou Temmink , Paola Pinilla , Bin Jia , Quincy Bosschaart

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…

Over the past fifteen years, surveys mainly at millimeter wavelengths have led to the discovery of $\sim$20 gas-bearing debris disks, most of them surrounding young intermediate-mass stars. Exploring the properties and origin of this gas…

地球与行星天体物理 · 物理学 2025-11-05 A. Moór , P. Ábrahám , Á , Kóspál , G. Cataldi , A. M. Hughes , S. Marino , Q. Kral , J. Milli , N. Pawellek

(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…

地球与行星天体物理 · 物理学 2016-08-08 Catherine Walsh , Hideko Nomura , Ewine F. van Dishoeck

Characterizing the dust thermal structure in protoplanetary disks is a fundamental task as the dust surface temperature can affect both the planetary formation and the chemical evolution. Since the temperature is dependent on many…

太阳与恒星天体物理 · 物理学 2023-12-13 S. Gavino , J. Kobus , A. Dutrey , S. Guilloteau , S. Wolf , J. K. Jørgensen , R. Sharma

"Debris disks" around young stars (analogues of the Kuiper Belt in our Solar System) show a variety of non-trivial structures attributed to planetary perturbations and used to constrain the properties of the planets. However, these analyses…

地球与行星天体物理 · 物理学 2013-08-06 W. Lyra , M. Kuchner

The degree of coupling between dust particles and their surrounding gas in protoplanetary disks is quantified by the dimensionless Stokes number. The Stokes number (St) governs particle size and spatial distributions, in turn establishing…

地球与行星天体物理 · 物理学 2024-08-02 Teng Ee Yap , Konstantin Batygin

Spatially resolved scattered-light images of circumstellar (CS) debris in exoplanetary systems constrain the physical properties and orbits of the dust particles in these systems. They also inform on co-orbiting (but unseen) planets,…

We identify a new hydrodynamical instability in protoplanetary discs that may arise due to variations in the dust-to-gas ratio and may lead to concentration of dust grains within a disc. The instability can arise due to dust settling, which…

地球与行星天体物理 · 物理学 2015-09-09 Pablo Loren-Aguilar , Matthew R. Bate