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首页> 外文期刊>International journal of modern physics, D. Gravitation, astrophysics, cosmology >Magnetic fields in turbulent quark matter and magnetar bursts
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Magnetic fields in turbulent quark matter and magnetar bursts

机译:湍流夸克物质和磁力爆裂的磁场

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摘要

We analyze the magnetic field evolution in dense quark matter with unbroken chiral symmetry, which can be found inside quark and hybrid stars. The magnetic field evolves owing to the chiral magnetic effect in the presence of the electroweak interaction between quarks. In our study, we also take into account the magnetohydrodynamic turbulence effects in dense quark matter. We derive the kinetic equations for the spectra of the magnetic helicity density and the magnetic energy density as well as for the chiral imbalances. On the basis of the numerical solution of these equations, we find that turbulence effects are important for the behavior of small scale magnetic fields. It is revealed that, under certain initial conditions, these magnetic fields behave similarly to the electromagnetic flashes of some magnetars. We suggest that fluctuations of magnetic fields, described in frames of our model, which are created in the central regions of a magnetized compact star, can initiate magnetar bursts.
机译:我们分析了密集的夸克物质中的磁场演变,具有不间断的手性对称,可以在夸克和杂交恒星内找到。由于在夸克之间的Electroweak相互作用存在下,磁场不会出现在手性磁影。在我们的研究中,我们还考虑了致密夸克物质中的磁力流体动力湍流效应。我们从磁螺旋密度的光谱和磁能密度以及手性不平衡导出动力学方程。在这些方程的数值解的基础上,我们发现湍流效应对于小规模磁场的行为很重要。据透露,在某些初始条件下,这些磁场的行为与一些磁铁的电磁闪烁类似。我们建议在我们的模型帧中描述的磁场波动,这些磁场在磁化紧凑型明星的中心区域中创建,可以启动磁场突发。

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