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We analyzed V-band photometry of the Be star {\omega} CMa, obtained during the last four decades, during which the star went through four complete cycles of disc formation and dissipation. The data were simulated by hydrodynamic models…

太阳与恒星天体物理 · 物理学 2018-07-04 M. R. Ghoreyshi , A. C. Carciofi , L. R. Rimulo , R. G. Vieira , D. M. Faes , D. Baade , J. E. Bjorkman , S. Otero , Th. Rivinius

We analyze the V-band photometry data of the Be star omega CMa, observed during the last four decades. The data is fitted by hydrodynamic models based on the viscous decretion disk (VDD) theory, in which a disk around a fast-spinning Be…

太阳与恒星天体物理 · 物理学 2017-02-24 Mohammad Reza Ghoreyshi , Alex Cavalieri Carciofi

The observed emission lines of Be stars originate from a circumstellar Keplerian disk that are generally well explained by the Viscous Decretion Disk model. In an earlier work we performed the modeling of the full light curve of the bright…

太阳与恒星天体物理 · 物理学 2021-03-24 Mohammad R. Ghoreyshi , Alex C. Carciofi , Carol E. Jones , Daniel M. Faes , Dietrich Baade , Thomas Rivinius

The viscous decretion disk (VDD) model is able to explain most of the currently observable properties of the circumstellar disks of Be stars. However, more stringent tests, focusing on reproducing multitechnique observations of individual…

Be stars possess gaseous circumstellar decretion disks, which are well described using standard $\alpha$-disk theory. The Be star 28 CMa recently underwent a long outburst followed by a long period of quiescence, during which the disk…

Be stars are main-sequence massive stars with emission features in their spectrum, which originates in circumstellar gaseous discs. Even though the viscous decretion disc (VDD) model can satisfactorily explain most observations, two…

Be stars possess gaseous circumstellar disks that modify in many ways the spectrum of the central B star. Furthermore, they exhibit variability at several timescales and for a large number of observables. Putting the pieces together of this…

太阳与恒星天体物理 · 物理学 2015-06-05 X. Haubois , A. C. Carciofi , Th. Rivinius , A. T. Okazaki , J. E. Bjorkman

Circumstellar discs around Be stars are formed by the material ejected by the central star. This process removes excess angular momentum from the star as viscosity facilitates the mass and angular momentum transfer within the disc and its…

太阳与恒星天体物理 · 物理学 2022-11-09 M. R. Ghoreyshi , C. E. Jones , A. Granada

We apply the viscous decretion disc (VDD) model to interpret the infrared disc continuum emission of 80 Be stars observed in different epochs. In this way, we determined 169 specific disc structures, namely their density scale, $\rho_0$,…

太阳与恒星天体物理 · 物理学 2017-07-11 Rodrigo G. Vieira , Alex C. Carciofi , Jon E. Bjorkman , Thomas Rivinius , Dietrich Baade , Leandro R. Rímulo

Be stars exhibit variability for a great number of observables. Putting the pieces together of the disk dynamics is not an easy task and requires arduous modeling before achieving a good fit of the observational data. In order to guide the…

We revisit the viscous decretion disk (VDD) model of the classical Be star $\beta$ CMi as presented by \citet{klement} using an updated version of the radiative transfer code {\ttfamily HDUST}. A software bug was causing the mean…

太阳与恒星天体物理 · 物理学 2017-03-22 Robert Klement , Alex Cavalieri Carciofi , Thomas Rivinius

We investigated the properties of $80$ Be star disks, using the time dependent viscous decretion disk (VDD) model to interpret their mid-infrared continuum fluxes. Besides estimating the typical parameter ranges for such disks, this…

太阳与恒星天体物理 · 物理学 2017-07-12 Rodrigo G. Vieira , Alex C. Carciofi

Context. The structure of the inner parts of Be star disks (20 stellar radii) is well explained by the viscous decretion disk (VDD) model, which is able to reproduce the observable properties of most of the objects studied so far. The outer…

We present a novel theoretical tool to analyze the dynamical behaviour of a Be disk fed by non-constant decretion rates. It is mainly based on the computer code HDUST, a fully three-dimensional radiative transfer code that has been…

太阳与恒星天体物理 · 物理学 2015-05-20 Xavier Haubois , Alex C. Carciofi , Atsuo T. Okazaki , Jon E. Bjorkman

Angular momentum transport is a fundamental process shaping the structure, evolution, and lifespans of stars and disks across a wide range of astrophysical systems. Be stars offer a valuable environment for studying viscous transport of…

We present self-consistent solutions for the disk structure of classical Be stars. Our disk model is hydrostatically supported in the vertical direction and the radial structure is governed by viscosity ($\alpha$-disks). We perform…

天体物理学 · 物理学 2007-05-23 A. C. Carciofi , J. E. Bjorkman , A. S. Miroshnichenko , A. M. Magalhães , K. S. Bjorkman

In the last decade, the viscous decretion disk model has emerged as the new paradigm for Be star disks. In this contribution, we propose a simple analytical model to estimate the continuum infrared excess arising from these circumstellar…

太阳与恒星天体物理 · 物理学 2016-04-14 Rodrigo G. Vieira , Alex C. Carciofi , Jon E. Bjorkman

We study the effect of density distribution evolution on the global one-armed oscillation modes in low viscosity disks around isolated and binary Be stars. Observations show that some Be stars exhibit evidence of formation and dissipation…

太阳与恒星天体物理 · 物理学 2016-05-04 Finny Oktariani , Atsuo T. Okazaki , Chatief Kunjaya , Aprilia

Massive stars can during their evolution reach the phase of critical (or very rapid, near-critical) rotation when further increase in rotation rate is no longer kinematically allowed. The mass ejection and angular momentum outward transport…

太阳与恒星天体物理 · 物理学 2024-02-28 Petr Kurfürst

While the presence of discs around classical Be stars is well established, their origin is still uncertain. To understand what processes result in the creation of these discs and how angular momentum is transported within them, their…

太阳与恒星天体物理 · 物理学 2015-06-04 H. E. Wheelwright , J. E. Bjorkman , R. D. Oudmaijer , A. C. Carciofi , K. S. Bjorkman , J. M. Porter
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