论文标题

Barnard 335中磁场的失真

Distortion of Magnetic Fields in Barnard 335

论文作者

Kandori, Ryo, Saito, Masao, Tamura, Motohide, Tomisaka, Kohji, Matsumoto, Tomoaki, Tazaki, Ryo, Nagata, Tetsuya, Kusakabe, Nobuhiko, Nakajima, Yasushi, Kwon, Jungmi, Nagayama, Takahiro, Tatematsu, Ken'ichi

论文摘要

在这项研究中,基于近红外的偏振层观测值揭示了密集的原始核心核心barnard 335(B335)的详细磁场结构,以测量核心中磁性灰尘颗粒产生的二分光极化光。减去无关的环境极化组件后,使用24颗恒星映射了遍布B335的磁场,这首先揭示了它们具有轴对称性扭曲的沙漏形结构,朝着原恒定核心。基于简单的二维磁场建模,确定的平面和视线方向上的磁性倾斜角分别为$ 90^{\ circ} \ pm 7^{\ circ} $和$ 50^{\ \ \ \ \ \ courcy} \ circ} \ pm 10^{\ circ} $。 B335的总磁场强度确定为$ 30.2 \ pm 17.7 $ $ $ $ $ $ {\ rm g} $。 B335的临界质量使用磁性和热/动荡的抗崩溃进行评估,被确定为$ m _ {\ rm cr} = 3.37 \ pm 0.94 $ $ $ $ {\ rm m} _ {\ odot} $,与观察到的核心质量相同,与观察到的核心质量相同因此,我们得出的结论是,B335从平衡附近的条件开始收缩。我们在极化图与消光图中发现了线性关系,最多$ a_v \ sim 15 $ mag朝着最大的遮挡的恒星,这证实了我们的观察结果和分析提供了对核心的准确描述。

In this study, the detailed magnetic field structure of the dense protostellar core Barnard 335 (B335) was revealed based on near-infrared polarimetric observations of background stars to measure dichroically polarized light produced by magnetically aligned dust grains in the core. Magnetic fields pervading B335 were mapped using 24 stars after subtracting unrelated ambient polarization components, for the first time revealing that they have an axisymmetrically distorted hourglass-shaped structure toward the protostellar core. On the basis of simple two- and three-dimensional magnetic field modeling, magnetic inclination angles in the plane-of-sky and line-of-sight directions were determined to be $90^{\circ} \pm 7^{\circ}$ and $50^{\circ} \pm 10^{\circ}$, respectively. The total magnetic field strength of B335 was determined to be $30.2 \pm 17.7$ $μ{\rm G}$. The critical mass of B335, evaluated using both magnetic and thermal/turbulent support against collapse, was determined to be $M_{\rm cr} = 3.37 \pm 0.94$ ${\rm M}_{\odot}$, which is identical to the observed core mass of $M_{\rm core}=3.67$ M$_{\odot}$. We thus concluded that B335 started its contraction from a condition near equilibrium. We found a linear relationship in the polarization versus extinction diagram, up to $A_V \sim 15$ mag toward the stars with the greatest obscuration, which verified that our observations and analysis provide an accurate depiction of the core.

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