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The B Supergiant Components of the Double-lined Binary HD?1383

机译:双线二进制HD?1383的B超级组件

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We present new results from a study of high-quality red spectra of the massive binary star system HD 1383 (B0.5 Ib + B0.5 Ib). We determined radial velocities and revised orbital elements (P = 20.28184 ± 0.0002 days) and made Doppler tomographic reconstructions of the component spectra. A comparison of these with model spectra from non-LTE, line-blanketed atmospheres indicates that the two stars have almost identical masses (M2/M1 = 1.020 ± 0.014), temperatures (Teff = 28,000 ± 1000 K), gravities (log g = 3.25 ± 0.25), and projected rotational velocities (V sin i 30 km s-1). We investigate a number of constraints on the radii and masses of the stars based on the absence of eclipses, surface gravity, stellar wind terminal velocity, and probable location in the Perseus spiral arm of the Galaxy, and these indicate a range in probable radius and mass of R/R☉ = 14-20 and M/M☉ = 16-35, respectively. These values are consistent with model evolutionary masses for single stars of this temperature and gravity. Both stars are much smaller than their respective Roche radii, so the system is probably in a precontact stage of evolution. A fit of the system's spectral energy distribution yields a reddening of E(B - V) = 0.55 ± 0.05 and a ratio of total-to-selective extinction of R = 2.97 ± 0.15. We find no evidence of Hα emission from colliding stellar winds, which is probably the consequence of the low gas densities in the colliding winds zone.
机译:我们提供了对大规模双星系统HD 1383(B0.5 Ib + B0.5 Ib)的高质量红色光谱的研究的新结果。我们确定了径向速度并修改了轨道元素(P = 20.28184±0.0002天),并对分量光谱进行了多普勒层析成像重建。将这些与来自非LTE线状大气的模型光谱进行比较表明,这两颗恒星具有几乎相同的质量(M2 / M1 = 1.020±0.014),温度(Teff = 28,000±1000 K),重力(log g = 3.25±0.25),以及预计的旋转速度(V sin i 30 km s-1)。我们基于不存在月食,表面重力,恒星风终极速度以及银河系英仙座螺旋臂中可能的位置的情况,研究了对恒星半径和质量的一些限制,这些限制表明了可能的半径和R /R☉的质量分别为14-20和M /M☉= 16-35。这些值与该温度和重力的单颗恒星的模型演化质量一致。两颗恒星都比各自的罗氏半径小得多,因此该系统可能处于进化的预接触阶段。系统光谱能量分布的拟合产生E(B-V)= 0.55±0.05的变红,总消光与选择性消光之比为R = 2.97±0.15。我们没有发现碰撞的恒星风会释放Hα的证据,这很可能是碰撞风区中气体密度低的结果。

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