论文标题

离心突破重新连接作为电子加速度机制,为早期型星的无线电磁层提供动力

Centrifugal breakout reconnection as the electron acceleration mechanism powering the radio magnetospheres of early-type stars

论文作者

Owocki, Stanley P, Shultz, Matt E., ud-Doula, Asif, Chandra, Poonam, Das, Barnali, Leto, Paulo

论文摘要

磁性B明星通常表现出循环极化的无线电发射,认为是由被困在情节磁层中的能量电子发射引起的。最近的经验分析表明,磁场强度和恒星旋转速率均具有观察到的无线电发射量表的开始和强度。这挑战了现有的范式,即在磁性恒星风的外部区域的相对磁场线之间的当前纸上加速了能量电子,这不包括恒星旋转的作用。基于最近成功地解释了H $α$线排放的类似旋转场依赖性的基础,该模型通过离心突破(CBO)调节了磁层密度的模型,我们在这里研究了相关的CBO驱动磁重新连接在加速发射gyrosynChrotron无线电的电子中的潜在作用。我们特别表明,通过CBO重新连接进行能源产生的理论量表非常匹配观察到的无线电亮度的经验趋势,其经验趋势适当且近乎恒定的转换效率$ε\ of 10^{ - 8} $。我们总结了CBO量表的明显优势,而不是先前与电动力的关联,并讨论了CBO过程对X射线的潜在含义以及具有离心磁圈的旋转磁性B-Star的其他观察到的特征。

Magnetic B-stars often exhibit circularly polarized radio emission thought to arise from gyrosynchrotron emission by energetic electrons trapped in the circumstellar magnetosphere. Recent empirical analyses show that the onset and strength of the observed radio emission scale with both the magnetic field strength and the stellar rotation rate. This challenges the existing paradigm that the energetic electrons are accelerated in the current sheet between opposite-polarity field lines in the outer regions of magnetised stellar winds, which includes no role for stellar rotation. Building on recent success in explaining a similar rotation-field dependence of H$α$ line emission in terms of a model in which magnetospheric density is regulated by centrifugal breakout (CBO), we examine here the potential role of the associated CBO-driven magnetic reconnection in accelerating the electrons that emit the observed gyrosynchrotron radio. We show in particular that the theoretical scalings for energy production by CBO reconnection match well the empirical trends for observed radio luminosity, with a suitably small, nearly constant conversion efficiency $ε\approx 10^{-8}$. We summarize the distinct advantages of our CBO scalings over previous associations with an electromotive force, and discuss the potential implications of CBO processes for X-rays and other observed characteristics of rotating magnetic B-stars with centrifugal magnetospheres.

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