论文标题

使用渐近磁敏于掌握学探测恒星的内部磁性

Probing the internal magnetism of stars using asymptotic magneto-asteroseismology

论文作者

Mathis, Stéphane, Bugnet, Lisa, Prat, Vincent, Augustson, Kyle, Mathur, Savita, Garcia, Rafael A.

论文摘要

我们对恒星动力学的知识经历了一场革命,这要归功于同时由空间基于星空学和基于地面的高精度光谱学收集的大量高质量的光度观测值。他们允许我们在整个Hertzsprung-Russell图中探测恒星的内部旋转及其表面磁性。但是,仍应开发新的方法来探测这些恒星中的深磁场。我们的目标是提供地震诊断,使我们能够发出恒星的内部磁性。在这里,我们专注于渐近低频重力模式和高频声学模式。使用一阶扰动理论,我们将其频率的磁分布作为恒星参数的显式函数。与旋转的情况一样,我们显示了渐近的重力和声学模式如何使我们能够在它们传播的空腔中探测磁场的不同成分。这再次证明了在可能的情况下使用混合模式的高潜力。

Our knowledge of the dynamics of stars has undergone a revolution thanks to the simultaneous large amount of high-quality photometric observations collected by space-based asteroseismology and ground-based high-precision spectropolarimetry. They allowed us to probe the internal rotation of stars and their surface magnetism in the whole Hertzsprung-Russell diagram. However, new methods should still be developed to probe the deep magnetic fields in those stars. Our goal is to provide seismic diagnoses that allow us to sound the internal magnetism of stars. Here, we focus on asymptotic low-frequency gravity modes and high-frequency acoustic modes. Using a first-order perturbative theory, we derive magnetic splittings of their frequencies as explicit functions of stellar parameters. As in the case of rotation, we show how asymptotic gravity and acoustic modes can allow us to probe the different components of the magnetic field in the cavities where they propagate. This demonstrates again the high potential of using mixed-modes when this is possible.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源