首页> 外文期刊>The Astrophysical journal >3D SIMULATIONS OF REALISTIC POWER HALOS IN MAGNETOHYDROSTATIC SUNSPOT ATMOSPHERES: LINKING THEORY AND OBSERVATION
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3D SIMULATIONS OF REALISTIC POWER HALOS IN MAGNETOHYDROSTATIC SUNSPOT ATMOSPHERES: LINKING THEORY AND OBSERVATION

机译:静磁太阳黑子大气中现实光晕的3D模拟:理论与观测的联系

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The well-observed acoustic halo is an enhancement in time-averaged Doppler velocity and intensity power with respect to quiet-Sun values that is prominent for the weak and highly inclined field around the penumbra of sunspots and active regions. We perform 3D linear wave modeling with realistic distributed acoustic sources in a magnetohydrostatic sunspot atmosphere and compare the resultant simulation enhancements with multiheight SDO observations of the phenomenon. We find that simulated halos are in good qualitative agreement with observations. We also provide further proof that the underlying process responsible for the halo is the refraction and return of fast magnetic waves that have undergone mode conversion at the critical a?=?c atmospheric layer. In addition, we also find strong evidence that fast?Alfvén mode conversion plays a significant role in the structure of the halo, taking energy away from photospheric and chromospheric heights in the form of field-aligned Alfvén waves. This conversion process may explain the observed "dual-ring" halo structure at higher (8 mHz) frequencies.
机译:相对于安静的太阳值,观察到的声晕是平均时间多普勒速度和强度功率的增强,这对于黑子和活动区域的半影周围的弱且高度倾斜的场尤为突出。我们在静磁黑子大气中使用现实的分布声源执行3D线性波建模,并将结果模拟增强与现象的多高度SDO观察进行比较。我们发现模拟光环与观测值在质量上吻合良好。我们还提供了进一步的证据,证明造成光环的潜在过程是在临界a?=?c大气层经历了模式转换的快速电磁波的折射和返回。此外,我们还发现有力的证据表明,快速Alfvén模式转换在光晕结构中起着重要作用,它以场对准Alfvén波的形式从光层和色球层高度带走能量。此转换过程可以解释在更高(> 8 mHz)频率下观察到的“双环”光晕结构。

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