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首页> 外文期刊>The Astrophysical journal >THE LYMAN-CONTINUUM FLUXES AND STELLAR PARAMETERS OF O AND EARLY B-TYPE STARS
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THE LYMAN-CONTINUUM FLUXES AND STELLAR PARAMETERS OF O AND EARLY B-TYPE STARS

机译:O型和B型早期恒星的莱曼连续通量和恒星参数

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摘要

Using the results of the most recent stellar atmosphere models applied to a sample of hot stars, we construct calibrations of effective temperature (T_(eff)), and gravity (log g) with a spectral type and luminosity class for Galactic O-type and early B-type stars. From the model results we also derive an empirical relation between the bolometric correction and T_(eff) and log g. Using a sample of stars with known distances located in OB associations in the Galaxy and the Large Magellanic Cloud, we derive a new calibration of M_V with spectral class. With these new calibrations and the stellar atmosphere models of Kurucz, we calculate the physical parameters and ionizing photon luminosities in the H~0 and He~0 con-tinua for O and early B-type stars. We find substantial differences between our values of the Lymancontinuum luminosity and those reported in the literature. We also discuss the systematic discrepancy between O-type stellar masses derived from spectroscopic models and those derived from evolutionary tracks. Most likely, the cause of this "mass discrepancy" lies primarily in the atmospheric models, which are plane parallel and hydrostatic and therefore do not account for an extended atmosphere and the velocity fields in a stellar wind. Finally, we present a new computation of the Lyman-continuum luminosity from 429 known O stars located within 2.5 kpc of the Sun. We find the total ionizing luminosity from this population (Q_0~(Tot) = 7.0 x 10~(51) photons s~(-1)) to be 47% larger than that determined using the Lyman continuum values tabulated by Panagia.
机译:利用应用于恒星样本的最新恒星大气模型的结果,我们构造了有效温度(T_(eff))和重力(log g)的标定,其中银河O型光谱的光谱类型和光度等级为早期的B型星。从模型结果中,我们还可以得出辐射热校正与T_(eff)和log g之间的经验关系。使用位于银河系和大麦哲伦星云中OB关联中的,具有已知距离的恒星样本,我们得出了具有光谱类别的M_V的新标定。利用这些新的标定和库鲁兹的恒星大气模型,我们计算了O型和B型早期恒星在H〜0和He〜0连续面上的物理参数和电离光子光度。我们发现,Lymancontinuum光度值与文献报道的值之间存在实质性差异。我们还讨论了从光谱模型得出的O型恒星质量与从演化轨迹得出的O型恒星质量之间的系统差异。最有可能造成这种“质量差异”的原因主要在于大气层模型,它们是平面平行且静水压的,因此不能解释恒星风中的大气扩展和速度场。最后,我们提出了从位于太阳2.5 kpc内的429个已知O星进行的莱曼连续光度的新计算。我们发现该群体的总电离发光度(Q_0〜(Tot)= 7.0 x 10〜(51)光子s〜(-1))比使用Panagia列表的莱曼连续谱值确定的总电离发光度大47%。

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