English
Related papers

Related papers: Water ice in the debris disk around HD 181327

200 papers

Extrasolar debris disks are the dust disks found around nearby main sequence stars arising from the break-up of asteroids and comets orbiting the stars. Far-IR surveys (e.g., with Herschel) showed that ~20% of stars host detectable dust…

Earth and Planetary Astrophysics · Physics 2020-01-22 Mark C. Wyatt

The dust disks observed around mature stars are evidence that plantesimals are present in these systems on spatial scales that are similar to that of the asteroids and the KBOs in the Solar System. These dust disks (a.k.a. ``debris disks'')…

Astrophysics · Physics 2007-05-23 Amaya Moro-Martin , Mark C. Wyatt , Renu Malhotra , David E. Trilling

We review the nearby debris disk structures revealed by multi-wavelength images from Spitzer and Herschel, and complemented with detailed spectral energy distribution modeling. Similar to the definition of habitable zones around stars,…

Earth and Planetary Astrophysics · Physics 2015-06-16 Kate Y. L. Su , George H. Rieke

We made near infrared multicolor imaging observations of a disk around Herbig Be star HD100546 using Gemini/NICI. K (2.2\,$\mu$m), H$_2$O ice (3.06\,$\mu$m), and L'(3.8\,$\mu$m) disk images were obtained and we found the 3.1\,$\mu$m…

Earth and Planetary Astrophysics · Physics 2016-04-13 M. Honda , T. Kudo , S. Takatsuki , A. K. Inoue , T. Nakamoto , M. Fukagawa , M. Tamura , H. Terada , N. Takato

Water is detected in environments representing every stage of star and solar system formation, but its chemical evolution throughout these stages remains poorly constrained. Deuterium ratios offer a means of probing chemical links between…

We present a new velocity-resolved survey of 2.9 $\mu$m spectra of hot H$_2$O and OH gas emission from protoplanetary disks, obtained with CRIRES at the VLT ($\Delta v \sim$ 3 km s$^{-1}$). With the addition of archival Spitzer-IRS spectra,…

Earth and Planetary Astrophysics · Physics 2017-01-18 A. Banzatti , K. M. Pontoppidan , C. Salyk , G. Herczeg , E. F. van Dishoeck , G. A. Blake

Planetary systems, ours included, are formed in disks of dust and gas around young stars. Disks are an integral part of the star and planet formation process, and knowledge of the distribution and temperature of inner disk material is…

Astrophysics · Physics 2009-06-23 J. A. Eisner

We review the general theoretical concepts and observational constraints on the distribution and evolution of water vapor and ice in protoplanetary disks, with a focus on the Solar System. Water is expected to freeze out at distances…

Solar and Stellar Astrophysics · Physics 2017-08-30 Lee Hartmann , Fred Ciesla , Oliver Gressel , Richard Alexander

Water is one of the key molecules in the physical and chemical evolution of star- and planet-forming regions. We here report the first spatially resolved observation of thermal emission of (an isotopologue of) water with the Plateau de Bure…

Astrophysics of Galaxies · Physics 2015-05-14 Jes K. Jorgensen , Ewine F. van Dishoeck

The James Webb Space Telescope now enables the spectral study of ices with unprecedented sensitivity and angular resolution. Water ice plays a crucial role in the growth of grains and in planetary formation but its spatial distribution in…

Earth and Planetary Astrophysics · Physics 2025-04-09 Laurine Martinien , Gaspard Duchêne , François Ménard , Ryo Tazaki , Karl. R. Stapelfeldt

Terrestrial and sub-Neptune planets are expected to form in the inner ($<10~$AU) regions of protoplanetary disks. Water plays a key role in their formation, although it is yet unclear whether water molecules are formed in-situ or…

Debris disks are extrasolar analogs to our own Kuiper Belt and they are detected around at least 17% of nearby Sun-like stars. The morphology and dynamics of a disk encode information about its history, as well as that of any exoplanets…

Understanding the history and evolution of small bodies, such as dust grains and comets, in planet-forming disks is very important to reveal the architectural laws responsible for the creation of planetary systems. These small bodies in…

Astrophysics of Galaxies · Physics 2018-10-10 Alexey Potapov , Cornelia Jäger , Thomas Henning

Water is the main constituent of interstellar ices, and it plays a key role in the evolution of many regions of the interstellar medium, from molecular clouds to planet-forming disks. In cold regions of the ISM, water is expected to be…

The existence of water in extrasolar planetary systems is of great interest as it constrains the potential for habitable planets and life. Here, we report the identification of a circumstellar disk that resulted from the destruction of a…

Earth and Planetary Astrophysics · Physics 2013-10-16 J. Farihi , B. T. Gänsicke , D. Koester

Water (H2O) ice is an important solid constituent of many astrophysical environments. To comprehend the role of such ices in the chemistry and evolution of dense molecular clouds and comets, it is necessary to understand the freeze-out,…

Cold debris disks (T$<$200 K) are analogues to the dust in the Solar System's Kuiper belt--dust generated from the evaporation and collision of minor bodies perturbed by planets, our Sun, and the local interstellar medium. Scattered light…

We present a new near-infrared photometric system for detection of water ice and methane ice in the solar system. The system consists of two medium-band filters in the K-band region of the near-infrared, which are sensitive to water ice and…

Earth and Planetary Astrophysics · Physics 2015-05-27 Chadwick A. Trujillo , Scott S. Sheppard , Emily L. Schaller

Debris disks are tenuous, dust-dominated disks commonly observed around stars over a wide range of ages. Those around main sequence stars are analogous to the Solar System's Kuiper Belt and Zodiacal light. The dust in debris disks is…

Earth and Planetary Astrophysics · Physics 2018-10-17 A. Meredith Hughes , Gaspard Duchene , Brenda Matthews

Water is a molecule that is tightly related to many facets of star and planet formation. Water's abundance and distribution, especially the location of it's snowline has thus been the subject of much study. While water is seen to be…

Earth and Planetary Astrophysics · Physics 2021-09-08 Arthur D. Bosman , Edwin A. Bergin