论文标题

红色巨星的非radial振荡中的核心磁场烙印

Core magnetic field imprint in the non-radial oscillations of red giant stars

论文作者

Gomes, Pedro, Lopes, Ilídio

论文摘要

红色巨星中的磁场仍然是一个鲜为人知的话题,尤其是在涉及其在地面以下的地区的强度方面。在这项工作中,我们提出,可以使用高绝对径向的重力为主导的混合模式和低角度度来探测其辐射核中的磁场。使用核心和经典扰动方法的两种型轴对称构型,我们为这些振荡模式的磁频率拆分得出一个分析表达式。考虑三个不同的红色巨型型号,质量为1.3 \(M_ \ odot \),1.6 \(M_ \ odot \)和2.0 \(M_ \ odot \),我们发现$ 10^5 $ g的野外强度在这些恒星的核心中是必要的,以诱导这些恒星的频率划分频率的频率,以诱导$ use $ us $ hz in dip的频率。 Moreover, taking into account observational limits, we estimate that magnetic fields in the cores of red giants that do not present observable magnetic splittings cannot exceed $10^4$ G. Given the general absence of observable splittings in the oscillation spectra of these stars, and assuming that present mode suppression mechanisms are not biased towards certain azimuthal orders and retain all peaks in each multiplet, our results lead us to conclude that internal在红色巨人队中,具有所考虑的配置和优势的田野并不普遍。

Magnetic fields in red giant stars remain a poorly understood topic, particularly in what concerns their intensity in regions far below the surface. In this work, we propose that gravity-dominated mixed modes of high absolute radial order and low angular degree can be used to probe the magnetic field in their radiative cores. Using two poloidal, axisymmetric configurations for the field in the core and the classical perturbative approach, we derive an analytical expression for the magnetic frequency splitting of these oscillation modes. Considering three distinct red giant models, with masses of 1.3\(M_\odot\), 1.6\(M_\odot\) and 2.0\(M_\odot\), we find that a field strength of $10^5$ G is necessary in the core of these stars to induce a frequency splitting of the order of a $μ$Hz in dipole and quadrupole oscillation modes. Moreover, taking into account observational limits, we estimate that magnetic fields in the cores of red giants that do not present observable magnetic splittings cannot exceed $10^4$ G. Given the general absence of observable splittings in the oscillation spectra of these stars, and assuming that present mode suppression mechanisms are not biased towards certain azimuthal orders and retain all peaks in each multiplet, our results lead us to conclude that internal fields with the considered configurations and strengths above $10^4$ G are not prevalent in red giants.

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