朝向博克球状体B5周围区域的星际偏振

IF 0.7 4区 物理与天体物理 Q4 ASTRONOMY & ASTROPHYSICS
H. A. Krayani, V. B. Il’in
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引用次数: 0

摘要

本文报道了在距离d≈300pc的英仙座云复合体巴纳德5 (B5)周围2°× 2°场的光谱和偏振观测结果。利用这些数据,对大约45颗恒星进行了二维光谱分类。通过对其中20颗恒星的多波段偏振测量,我们找到了星际偏振的参数(Pmax, λmax)。利用盖亚视差和最近光度测量的数据,我们估计了恒星的星际消光AV。分析变化的参数选择投票制,Pmax,λ马克斯在天空中飞机和距离让我们得出这样的结论:在考虑领域(不含B5的光环)灭绝和极化的主要贡献是金牛座的扩展提供的云复杂(TMC)在d≈150 pc,和的派生值参数表明,视线的夹角和磁场方向的TMC明显不同于90°。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Interstellar Polarisation Towards a Region Around the Bok Globule B5

We report the results of our spectroscopic and polarimetric observations of 2° × 2° field around the globule Barnard 5 (B5) belonging to the Perseus cloud complex at the distance d ≈ 300 pc. Using these data, two-dimensional spectral classification was made for about 45 stars. Multi-band polarimetry of about 20 of these stars allowed us to find the parameters (Pmax, λmax) of interstellar polarization. Using the Gaia parallaxes and data from the recent photometric surveys, we estimate the interstellar extinction AV towards the stars. Our analysis of à variations of the parameters AV, Pmax, λmax in the sky plane and with the distance allows us to conclude that in the considered field (excluding the halo of B5) the main contribution to the extinction and polarization is provided by an extension of the Taurus cloud complex (TMC) at d ≈ 150 pc, and that the derived values of the parameters indicate that the angle between the line of sight and the magnetic field direction in this part of TMC significantly differs from 90°.

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来源期刊
Astrophysics
Astrophysics 地学天文-天文与天体物理
CiteScore
0.90
自引率
20.00%
发文量
32
审稿时长
6-12 weeks
期刊介绍: Astrophysics (Ap) is a peer-reviewed scientific journal which publishes research in theoretical and observational astrophysics. Founded by V.A.Ambartsumian in 1965 Astrophysics is one of the international astronomy journals. The journal covers space astrophysics, stellar and galactic evolution, solar physics, stellar and planetary atmospheres, interstellar matter. Additional subjects include chemical composition and internal structure of stars, quasars and pulsars, developments in modern cosmology and radiative transfer.
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