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Alfvén seismic vibrations of crustal solid-state plasma in quaking paramagnetic neutron star

机译:地震顺磁中子星中地壳固态等离子体的Alfvén地震振动

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摘要

Magneto-solid-mechanical model of two-component, core-crust, paramagnetic neutron star responding to quake-induced perturbation by differentially rotational, torsional, oscillations of crustal electron-nuclear solid-state plasma about axis of magnetic field frozen in the immobile paramagnetic core is developed. Particular attention is given to the node-free torsional crust-against-core vibrations under combined action of Lorentz magnetic and Hooke's elastic forces; the damping is attributed to Newtonian force of shear viscose stresses in crustal solid-state plasma. The spectral formulas for the frequency and lifetime of this toroidal mode are derived in analytic form and discussed in the context of quasiperiodic oscillations of the x-ray outburst flux from quaking magnetars. The application of obtained theoretical spectra to modal analysis of available data on frequencies of oscillating outburst emission suggests that detected variability is the manifestation of crustal Alfvén's seismic vibrations restored by Lorentz force of magnetic field stresses.
机译:两组分,地壳,顺磁的中子星的磁固力学模型,通过地壳电子核固态等离子体围绕在静止的顺磁中冻结的磁场轴的微分旋转,扭转,振动来响应地震引起的扰动核心得以发展。在洛伦兹磁力和胡克弹性力的共同作用下,应特别注意无节点扭转壳对芯的振动。阻尼归因于地壳固态等离子体中的剪切粘胶应力的牛顿力。此环形模式的频率和寿命的频谱公式以解析形式导出,并在来自地震磁星的X射线爆发通量的准周期振荡的背景下进行了讨论。将获得的理论谱应用于对振荡爆发频率的可用数据进行模态分析,表明所检测到的变化是阿尔弗文地壳的地震振动的体现,这是通过磁场应力的洛伦兹力恢复的。

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