论文标题

行星星云的共同包膜塑造。 ii。磁性解决方案和自我填充的流出

Common Envelope Shaping of Planetary Nebulae. II. Magnetic Solutions and Self-Collimated Outflows

论文作者

García-Segura, Guillermo, Taam, Ronald E., Ricker, Paul M.

论文摘要

在红色巨星信封中存在的订单$ 10^1-10^2 $高斯在共同的包络场景中被弹出。这些田地可能导致原始星云中的磁性驱动风。使用磁化风与从共同包膜相的3D模拟绘制的包膜相互作用的2D模拟,我们研究了后常见的包膜风的限制,加热和磁场的发展。我们发现,在自调节阶段,可以通过压缩弹出磁场来增强磁场10^4 $。我们发现$ 10^{46} $ erg的动能值的值解释了原始星云中推断出的大值。我们表明,形成的环盘与球形,恒星风的相互作用产生的“锥形”流量几乎与施加的锥形流程几乎没有区别。这增加了原始星云风的起源的不确定性,这可能是恒星,偶然性(恒星积聚磁盘),圆形(环形积聚磁盘),也可以是这三种组合的组合。 在此框架内,讨论了弱磁性风的自我碰撞的场景,可以解释观察到的直接过程的两个对象,即HD 101584和HEN 3-1475。还提供了CRL 2688中赤道的分子氢发射的解释。

Magnetic fields of order $10^1-10^2$ gauss that are present in the envelopes of red giant stars are ejected in common envelope scenarios. These fields could be responsible for the launching of magnetically driven winds in proto-planetary nebulae. Using 2D simulations of magnetized winds interacting with an envelope drawn from a 3D simulation of the common envelope phase, we study the confinement, heating, and magnetic field development of post-common envelope winds. We find that the ejected magnetic field can be enhanced via compression by factors up to $\sim 10^4$ in circumbinary disks during the self-regulated phases. We find values for the kinetic energy of the order of $10^{46}$ erg that explain the large values inferred in proto-planetary nebula outflows. We show that the interaction of the formed circumbinary disk with a spherical, stellar wind produces a "tapered" flow that is almost indistinguishable from an imposed tapered flow. This increases the uncertainty of the origin of proto-planetary nebula winds, which could be either stellar, circumstellar (stellar accretion disk), circumbinary (circumbinary accretion disk), or a combination of all three. Within this framework, a scenario for self-collimation of weakly magnetized winds is discussed, which can explain the two objects where the collimation process is observationally resolved, HD 101584 and Hen 3-1475. An explanation for the equatorial, molecular hydrogen emission in CRL 2688 is also presented.

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