...
首页> 外文期刊>The Astrophysical journal >Alfvén-wave-driven Magnetic Rotator Winds from Low-mass Stars. I. Rotation Dependences of Magnetic Braking and Mass-loss Rate
【24h】

Alfvén-wave-driven Magnetic Rotator Winds from Low-mass Stars. I. Rotation Dependences of Magnetic Braking and Mass-loss Rate

机译:Alfvén-波浪驱动的磁力转子从低质量恒星风。 I.磁动制动和质量损失率的旋转依赖性

获取原文

摘要

Observations of stellar rotation show that low-mass stars lose angular momentum during the main sequence. We simulate the winds of sunlike stars with a range of rotation rates, covering the fast and slow magneto-rotator regimes, including the transition between the two. We generalize an Alfvén-wave-driven solar wind model that builds on previous works by including the magneto-centrifugal force explicitly. In this model, the surface-averaged open magnetic flux is assumed to scale as , where and Ro are the surface open-flux filling factor and Rossby number, respectively. We find that, (1) the angular-momentum loss rate (torque) of the wind is described as , yielding a spin-down law . (2) The mass-loss rate saturates at , due to the strong reflection and dissipation of Alfvén waves in the chromosphere. This indicates that the chromosphere has a strong impact in connecting the stellar surface and stellar wind. Meanwhile, the wind ram pressure scales as , which is able to explain the lower envelope of the observed stellar winds by Wood et al. (3) The location of the Alfvén radius is shown to scale in a way that is consistent with one-dimensional analytic theory. Additionally, the precise scaling of the Alfvén radius matches previous works, which used thermally driven winds. Our results suggest that the Alfvén-wave-driven magnetic rotator wind plays a dominant role in the stellar spin-down during the main sequence.
机译:恒星旋转的观察表明,低质量恒星在主序列期间失去了角度的动量。我们模拟了各种旋转速率的阳光恒星的风,覆盖快速和慢磁力旋转机构,包括两者之间的过渡。我们概括了一个Alfvén-Wave驱动的太阳风模型,通过明确地包括磁离心力来构建以前的作品。在该模型中,假设表面平均的开放磁通量刻度,分别在其中和RO是表面开放通量填充因子和罗斯比数。我们发现,(1)风的角动量损失率(扭矩)被描述为,产生拆卸法。 (2)由于Alfvén波在铬圈中的强烈反射和耗散,质量损失率饱和。这表明铬圈在连接恒星表面和恒星风中具有强烈影响。同时,风压力压力尺度为,它能够通过木等人解释观察到的恒星风的较低包络。 (3)Alfvén半径的位置显示以与一维分析理论一致的方式缩放。此外,Alfvén半径的精确缩放与之前的作品相匹配,它使用热驱动风。我们的研究结果表明,Alfvén-Wave驱动的磁力转位风在主序列期间在恒星旋转中起着显着作用。

著录项

相似文献

  • 外文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号