论文标题

M矮人的磁场

Magnetic fields of M dwarfs

论文作者

Kochukhov, Oleg

论文摘要

磁场对于M矮人的内部和大气特性起着基本作用,并极大地影响了这些低质量恒星宜居区域中绕的陆地行星。在恒星表面和整个扩展的恒星磁层上的磁场强度和拓扑的测定是推进恒星和行星科学的关键成分。这里回顾了应用于M-warf恒星的磁场测量方法的现代方法,重点是基于对高分辨率强度和极化光谱的Zeeman效应特征的解释的直接诊断。总结并进行了认真评估,从Zeeman扩展分析得出的平均场强度测量结果以及通过将层析成像映射方法应用于光谱仪观测来推断的全局磁几何形状的信息。在磁场改变了水力磁发射机和恒星内部结构的理论模型的背景下,讨论了对M-dwarf磁场的复杂,多尺度性质的新兴理解。

Magnetic fields play a fundamental role for interior and atmospheric properties of M dwarfs and greatly influence terrestrial planets orbiting in the habitable zones of these low-mass stars. Determination of the strength and topology of magnetic fields, both on stellar surfaces and throughout the extended stellar magnetospheres, is a key ingredient for advancing stellar and planetary science. Here modern methods of magnetic field measurements applied to M-dwarf stars are reviewed, with an emphasis on direct diagnostics based on interpretation of the Zeeman effect signatures in high-resolution intensity and polarisation spectra. Results of the mean field strength measurements derived from Zeeman broadening analyses as well as information on the global magnetic geometries inferred by applying tomographic mapping methods to spectropolarimetric observations are summarised and critically evaluated. The emerging understanding of the complex, multi-scale nature of M-dwarf magnetic fields is discussed in the context of theoretical models of hydromagnetic dynamos and stellar interior structure altered by magnetic fields.

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