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相关论文: Simulations of the line-driven instability in magn…

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Context: Clumping in the radiation-driven winds of hot, massive stars arises naturally due to the strong, intrinsic instability of line-driving (the `LDI'). But LDI wind models have so far mostly been limited to 1D, mainly because of severe…

太阳与恒星天体物理 · 物理学 2018-03-21 J. O. Sundqvist , S. P. Owocki , J. Puls

We investigate the effects of stellar limb-darkening and photospheric perturbations for the onset of wind structure arising from the strong, intrinsic line-deshadowing instability (LDI) of a line-driven stellar wind. A linear perturbation…

太阳与恒星天体物理 · 物理学 2015-06-11 Jon O. Sundqvist , Stanley P. Owocki

(Abridged) The behaviour of mass loss across bi-stability jump is a key uncertainty in models of massive stars. While an increase in mass loss is theoretically predicted, this has so far not been observationally confirmed. However,…

太阳与恒星天体物理 · 物理学 2019-11-20 F. A. Driessen , J. O. Sundqvist , N. D. Kee

Hot, massive (OB) stars experience strong line-driven stellar winds and mass loss. As the majority of efficient driving lines are metallic, the amount of wind driving and mass loss is dependent on the stellar metallicity Z. In addition,…

太阳与恒星天体物理 · 物理学 2022-07-13 F. A. Driessen , J. O. Sundqvist , A. Dagore

The high luminosities of massive stars drive strong stellar winds, through line scattering of the star's continuum radiation. This paper reviews the dynamics of such line driving, building first upon the standard CAK model for steady winds,…

太阳与恒星天体物理 · 物理学 2014-09-09 Stanley Owocki

We analyze recent 2D simulations of the nonlinear evolution of the line-deshadowing instability (LDI) in hot-star winds, to quantify how the associated highly clumped density structure can lead to a "turbulent porosity" reduction in…

太阳与恒星天体物理 · 物理学 2018-01-31 Stanley P. Owocki , Jon O. Sundqvist

It is observationally as well as theoretically well established that the winds of hot, massive OB-stars are highly structured on a broad range of spatial scales. This paper first discusses consequences of the small-scale structures…

太阳与恒星天体物理 · 物理学 2012-05-16 J. O. Sundqvist , S. P. Owocki

Line-driven wind instability is expected to cause small-scale wind inhomogeneities, X-ray emission, and wind line profile variability. The instability can already develop around the sonic point if it is initiated close to the photosphere…

太阳与恒星天体物理 · 物理学 2021-04-21 Jiri Krticka , Achim Feldmeier

This review describes the evidence for small-scale structure, `clumping', in the radiation line-driven winds of hot, massive stars. In particular, we focus on examining to what extent simulations of the strong instability inherent to…

太阳与恒星天体物理 · 物理学 2011-10-05 Jon O. Sundqvist , Stanley P. Owocki , Joachim Puls

Small-scale clumping in the winds of hot, massive stars is conventionally included in spectral analyses by assuming optically thin clumps, a void inter-clump medium, and a smooth velocity field. To reconcile investigations of different…

太阳与恒星天体物理 · 物理学 2015-05-14 J. O. Sundqvist , J. Puls , A. Feldmeier

Using a code that employs a self-consistent method for computing the effects of photo-ionization on circumstellar gas dynamics, we model the formation of wind-driven nebulae around massive stars. We take into account changes in stellar…

太阳与恒星天体物理 · 物理学 2022-02-22 Vikram V. Dwarkadas

We present numerical magnetohydrodynamic (MHD) simulations of the effect of stellar dipole magnetic fields on line-driven wind outflows from hot, luminous stars. Unlike previous fixed-field analyses, the simulations here take full account…

天体物理学 · 物理学 2011-05-05 Asif ud-Doula , Stanley P. Owocki

A small fraction of the radiative flux emitted by hot stars is absorbed by their winds and redistributed towards longer wavelengths. This effect, which leads also to the heating of the stellar photosphere, is termed wind blanketing. For…

太阳与恒星天体物理 · 物理学 2018-10-03 J. Krticka , A. Feldmeier

Context. Radiation-driven mass loss is key to our understanding of massive-star evolution. However, for low-luminosity O-type stars there are big discrepancies between theoretically predicted and empirically derived mass-loss rates (called…

太阳与恒星天体物理 · 物理学 2021-04-21 C. Lagae , F. A. Driessen , L. Hennicker , N. D. Kee , J. O. Sundqvist

The inner parsec of our Galaxy contains tens of Wolf-Rayet stars whose powerful outflows are constantly interacting while filling the region with hot, diffuse plasma. Theoretical models have shown that, in some cases, the collision of…

Stratified disks with strong horizontal magnetic fields are susceptible to magnetic buoyancy instability (MBI). Modifying the magnetic field and gas distributions, this can play an important role in galactic evolution. The MBI and the…

星系天体物理 · 物理学 2023-12-05 Yasin Qazi , Anvar Shukurov , Devika Tharakkal , Frederick A. Gent , Abhijit B. Bendre

In weakly magnetized, dilute plasmas in which thermal conduction along magnetic field lines is important, the usual convective stability criterion is modified. Instead of depending on entropy gradients, instability occurs for small…

天体物理学 · 物理学 2009-11-13 Ian J. Parrish , James M. Stone

We present initial attempts to include the multi-dimensional nature of radiation transport in hydrodynamical simulations of the small-scale structure that arises from the line-driven instability in hot-star winds. Compared to previous 1D or…

天体物理学 · 物理学 2009-11-10 Luc Dessart , S. P. Owocki

The clumping of massive star winds is an established paradigm, which is confirmed by multiple lines of evidence and is supported by stellar wind theory. We use the results from time-dependent hydrodynamical models of the instability in the…

太阳与恒星天体物理 · 物理学 2015-06-11 L. M. Oskinova , A. Feldmeier , P. Kretschmar

Fast line-driven stellar winds play an important role in the evolution of planetary nebulae. We provide global hot star wind models of central stars of planetary nebulae. The models predict wind structure including the mass-loss rates,…

太阳与恒星天体物理 · 物理学 2020-04-08 J. Krticka , J. Kubat , I. Krtickova
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