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Related papers: The Inner Disk Structure, Disk-Planet Interactions…

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Beta Pictoris (Beta Pic)'s well-studied debris disk and two known giant planets, in combination with the stability of HST/STIS (and now also JWST), offers a unique opportunity to test planet-disk interaction models and to observe recent…

Earth and Planetary Astrophysics · Physics 2024-08-23 Arin M. Avsar , Kevin Wagner , Dániel Apai , Christopher C. Stark , Mark C. Wyatt

We present new coronagraphic images of Beta Pictoris obtained with the Space Telescope Imaging Spectrograph (STIS) in September 1997. The high-resolution images (0.1") clearly detect the circumstellar disk as close as 0.75" to the star,…

The nearby young star beta Pictoris hosts a rich and complex planetary system, with at least two giant planets and a nearly edge-on debris disk that contains several dynamical subpopulations of planetesimals. While the inner ranges of the…

Earth and Planetary Astrophysics · Physics 2021-02-24 Markus Janson , Alexis Brandeker , Göran Olofsson , Rene Liseau

We present Keck images of the dust disk around Beta Pictoris at 17.9 microns that reveal new structure in its morphology. Within 1" (19 AU) of the star, the long axis of the dust emission is rotated by more than 10 degrees with respect to…

Astrophysics · Physics 2015-06-24 Z. Wahhaj , D. W. Koerner , M. E. Ressler , M. W. Werner , D. E. Backman , A. I. Sargent

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 numerically investigate the dynamics of how a close stellar fly-by encounter of a symmetrical circumstellar planetesimal disc can give rise to the many kinds of asymmetries and substructures attributed to the edge-on dusty disc of Beta…

Astrophysics · Physics 2009-10-31 J. D. Larwood , P. G. Kalas

(Abridged.) We present F435W (B), F606W (Broad V), and F814W (Broad I) coronagraphic images of the debris disk around Beta Pictoris obtained with HST's Advanced Camera for Surveys. We confirm that the previously reported warp in the inner…

We present 3-D models of dust distribution around beta Pictoris that produce the best fits to the Hubble Space Telescope Advanced Camera for Surveys' (HST/ACS) images obtained by Golimowski and co-workers. We allow for the presence of…

Solar and Stellar Astrophysics · Physics 2014-11-20 Mirza Ahmic , Bryce Croll , Pawel Artymowicz

We present the first JWST MIRI and NIRCam observations of the prominent debris disk around Beta Pictoris. Coronagraphic observations in 8 filters spanning from 1.8 to 23~$\mu$m provide an unprecedentedly clear view of the disk at these…

Context. We detected in 2009 a giant, close-by planet orbiting {\beta} Pic, a young star surrounded with a disk, extensively studied for more than 20 years. We showed that if located on an inclined orbit, the planet could explain several…

Solar and Stellar Astrophysics · Physics 2015-06-04 A. -M. Lagrange , A. Boccaletti , J. Milli , G. Chauvin , M. Bonnefoy , D. Mouillet , J. C. Augereau , J. H. Girard , S. Lacour , D. Apai

[abridged] We analyzed mid-infrared high-contrast coronagraphic images of the beta Pictoris system, taking advantage of the NEAR experiment using the VLT/VISIR instrument. The goal of our analysis is to investigate both the detection of the…

Thermal imaging of debris disks is resolving the vertical height in an increasing number of systems, enabling the use of the vertical structure to decode the dynamical state of the planetary system. In this study, we examine the…

Earth and Planetary Astrophysics · Physics 2026-05-07 Yinuo Han , Mark C. Wyatt , Marija R. Jankovic , Andrew Zhang , William R. F. Dent , A Meredith Hughes , Luca Matrà

We present millimeter imaging observations in the 1200 micron continuum of the disk around beta Pictoris. With the 25 arcsec beam, the beta Pic disk is unresolved perpendicularly to the disk plane (< 10 arcsec), but slightly resolved in the…

Very few debris discs have been imaged in scattered light at wavelengths beyond 3 microns because the thermal emission from both the sky and the telescope is generally too strong with respect to the faint emission of a debris disc. We…

Earth and Planetary Astrophysics · Physics 2015-06-19 J. Milli , A. -M. Lagrange , D. Mawet , O. Absil , J. -C. Augereau , D. Mouillet , A. Boccaletti , J. H. Girard , G. Chauvin

We present a new model of the $\beta$ Pictoris disk-and-planet system that simulates both the planetesimal collisions and the dynamics of the resulting dust grains, allowing us to model features and asymmetries in both thermal and scattered…

Earth and Planetary Astrophysics · Physics 2015-12-16 Erika R. Nesvold , Marc J. Kuchner

The $\beta$ Pictoris system is characterized by a dusty debris disk, in addition to the presence of two already known planets. This makes it a particularly interesting case for studying the formation and evolution of planetary systems at a…

Earth and Planetary Astrophysics · Physics 2025-02-26 A. Lacquement , H. Beust , V. Faramaz-Gorka , G. Duchêne

The vertical warp in the debris disk Beta Pictoris -- an inclined inner disk extending into a flat outer disk -- has long been interpreted as the signpost of a planet on an inclined orbit. Direct images spanning 2004-2010 have revealed Beta…

Earth and Planetary Astrophysics · Physics 2011-11-24 Rebekah I. Dawson , Ruth A. Murray-Clay , Daniel C. Fabrycky

We observed the edge-on, planet-bearing disk of {\beta} Pictoris using T-ReCS at Gemini to clarify and extend previous observations and conclusions about this unique system. Our spectroscopy and spectral modeling of the 10-micron silicate…

Earth and Planetary Astrophysics · Physics 2014-11-05 Dan Li , Charles M. Telesco , Christopher M. Wright

Our efficient numerical approach has been applied to modeling the asymmetric circumstellar dust disk around Beta Pictoris as observed with the HST/STIS. We present a new model on the origin of the warping of the Beta Pic disk. We suggest…

Astrophysics · Physics 2007-05-23 Nick Gorkavyi , Sara Heap , Leonid Ozernoy , Tanya Taidakova , John Mather
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