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Related papers: Dust and Gas around lambda Bootis Stars

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The young star beta Pictoris is well known for its dusty debris disk, produced through the grinding down by collisions of planetesimals, kilometre-sized bodies in orbit around the star. In addition to dust, small amounts of gas are also…

The results of the abundance analyses of six lambda Bootis stars are presented. For three stars, the impact of individual ODFs and various treatments of convection in the calculactions of the model atmospheres are investigated.

Astrophysics · Physics 2007-05-23 U. Heiter

Beta Pictoris is a young planetary system surrounded by a debris disk of dust and gas. The gas source of this disk could be exocomets (or 'falling and evaporating bodies', FEBs), which produce refractory elements (Mg, Ca, Fe) through…

We have obtained Spitzer IRS 5.5 - 35 micron spectroscopy of the debris disk around beta Pictoris. In addition to the 10 micron silicate emission feature originally observed from the ground, we also detect the crystalline silicate emission…

Many stars are surrounded by disks of dusty debris formed in the collisions of asteroids, comets and dwarf planets. But is gas also released in such events? Observations at submm wavelengths of the archetypal debris disk around $\beta$…

(Abridged) The main sequence star beta Pictoris hosts the best studied circumstellar disk to date. Nonetheless, a long-standing puzzle has been around since the detection of metallic gas in the disk: radiation pressure from the star should…

Astrophysics · Physics 2009-11-11 Rodrigo Fernández , Alexis Brandeker , Yanqin Wu

We analyze ISO archive data of the nearby bright emission-line star 51 Oph, previously classified as a proto-planetary system similar to beta Pic. The infrared spectrum reveals the presence of gas-phase emission bands of hot (approx 850 K)…

Astrophysics · Physics 2016-08-30 M. E. van den Ancker , G. Meeus , J. Cami , L. B. F. M. Waters , C. Waelkens

Lambda Boo stars are predominately A-type stars with solar abundant C, N, O, and S, but up to 2 dex underabundances of refractory elements. The stars' unusual surface abundances could be due to a selective accretion of volatile gas over…

Earth and Planetary Astrophysics · Physics 2016-01-13 Zachary H Draper , Brenda C Matthews , Grant M Kennedy , Mark C Wyatt , Kim A Venn , Bruce Sibthorpe

We previously explored the circumstellar effects on the Rb and Zr abundances in massive Galactic O-rich AGB stars. Here we are interested in the role of the extended atmosphere in the case of Li and Ca. Li is an important indicator of HBB…

Solar and Stellar Astrophysics · Physics 2019-03-27 V. Pérez-Mesa , O. Zamora , D. A. García-Hernández , Y. Osorio , T. Masseron , B. Plez , A. Manchado , A. I. Karakas , M. Lugaro

$\lambda$ Bo\"otis stars are a subset of chemically peculiar A-stars that display Solar abundances in lighter elements (C, N, O, S, etc.) but a deficiency in Iron-peak elements. This difference has been attributed to the A-stars accreting…

Solar and Stellar Astrophysics · Physics 2026-02-02 Richard J. Parker , Megan Allen

We present Hubble Space Telescope STIS far-UV spectra of the edge-on disk around 49 Ceti, one of the very few debris disks showing sub-mm CO emission. Many atomic absorption lines are present in the spectra, most of which arise from…

Earth and Planetary Astrophysics · Physics 2014-11-11 Aki Roberge , Barry Y. Welsh , Inga Kamp , Alycia J. Weinberger , Carol A. Grady

We present DECam imaging combined with Gaia DR2 data to study the Canis Major overdensity. The presence of the so-called Blue Plume stars in a low-pollution area of the color-magnitude diagram allows us to derive the distance and proper…

The group of lambda Bootis type stars comprises late B- to early F-type, Population I objects which are basically metal weak, in particular the Fe group elements, but with the clear exception of C, N, O and S. The present work is a…

The lambda Bootis (LB) stars are located at the upper main sequence of the H-R diagram and exhibit a peculiar abundance pattern. The light elements (C, N, O, and S) present solar abundances whereas all other elements are moderately to…

Solar and Stellar Astrophysics · Physics 2014-09-05 E. Paunzen , I. Kh. Iliev , L. Fossati , U. Heiter , W. W. Weiss

We examine the mid-infrared fluxes and spectral energy distributions for metal-poor stars with iron abundances [Fe/H] $\lesssim-5$, as well as two CEMP-no stars, to eliminate the possibility that their low metallicities are related to the…

Solar and Stellar Astrophysics · Physics 2015-06-22 Kim A. Venn , Thomas H. Puzia , Mike Divell , Stephanie Cote , David L. Lambert , Else Starkenburg

Medium and high resolution spectroscopy of U Equulei from 1 to 4 microns during 1997-2003 has revealed information about its unusual circumstellar envelope, observed previously at optical and radio wavelengths. Strong absorption bands of…

Astrophysics · Physics 2009-11-10 T. R. Geballe , C. Barnbaum , Keith S. Noll , M. Morris

The small group of lambda Bootis stars comprises late B to early F-type stars, with moderate to extreme (up to a factor 100) surface underabundances of most Fe-peak elements and solar abundances of lighter elements (C, N, O, and S). The…

Solar and Stellar Astrophysics · Physics 2012-01-04 E. Paunzen , U. Heiter , L. Fraga , O. Pintado

The hydrogen-line spectrum of eight lambda Boo type stars is studied. The observed H_delta and H_gamma profiles are compared with Kurucz's theoretical profiles. The existence of weak emission-like details in the cores of five lambda Boo…

Astrophysics · Physics 2007-05-23 I. Kh. Iliev , I. S. Barzova

High resolution FUV echelle spectra showing absorption features arising from CI and CO gas in the Beta Pictoris circumstellar (CS) disk were obtained on 1997 December 6 and 19 using the Space Telescope Imaging Spectrograph (STIS). An…

It is still a matter of debate if the group of lambda Bootis stars is homogeneously defined. A widely discussed working hypothesis formulates that two apparent solar abundant stars of an undetected spectroscopic binary system mimic a single…

Astrophysics · Physics 2009-11-11 Christian Stuetz , Ernst Paunzen