论文标题

预测耀斑t-tauri星的MHD模拟的无线电发射时间变化

Predicting the time variation of radio emission from MHD simulations of a flaring T-Tauri star

论文作者

Waterfall, C. O. G., Browning, P. K., Fuller, G. A., Gordovskyy, M., Orlando, S., Reale, F.

论文摘要

我们使用3D,理想的磁性水力动力模拟与陀螺仪的发射和辐射转移模型相结合的3D恒星中的磁盘积聚事件的时间依赖无线电发射。我们首次预测,来自耀斑的T-Tauri Star的多频(1 $ 1000 GHz)强度和圆形极化。将恒星与其间隔磁盘连接起来的通量管,填充了非热电子的分布,在磁盘中加热事件后,允许该系统逐步衰减,并允许系统进化。电子的能量分布以及非热功率定律指数和损耗率各不相同,以查看它们对整体通量的影响。光谱是从不同的视线产生的,从而给出了磁管和磁盘的不同视图。峰值通量通常发生在20美元左右 - $ 30 GHz,无线电发光度与T-Tauri恒星观察到的光度一致。对于所有模拟,发现峰值通量会随着时间的流逝而降低并移至较低的频率。频率依赖性的圆极化可以达到10 $ - $ 30 $ \%$,但具有复杂的结构,随着耀斑的发展而发展。我们的模型表明,对光谱的演变及其极化的观察可以对耀斑环境的物理特性和相关的增生事件产生重要约束。

We model the time dependent radio emission from a disk accretion event in a T-Tauri star using 3D, ideal magnetohydrodynamic simulations combined with a gyrosynchrotron emission and radiative transfer model. We predict for the first time, the multi-frequency (1$-$1000 GHz) intensity and circular polarisation from a flaring T-Tauri star. A flux tube, connecting the star with its circumstellar disk, is populated with a distribution of non-thermal electrons which is allowed to decay exponentially after a heating event in the disk and the system is allowed to evolve. The energy distribution of the electrons, as well as the non-thermal power law index and loss rate, are varied to see their effect on the overall flux. Spectra are generated from different lines of sight, giving different views of the flux tube and disk. The peak flux typically occurs around 20$-$30 GHz and the radio luminosity is consistent with that observed from T-Tauri stars. For all simulations, the peak flux is found to decrease and move to lower frequencies with elapsing time. The frequency-dependent circular polarisation can reach 10$-$30$\%$ but has a complex structure which evolves as the flare evolves. Our models show that observations of the evolution of the spectrum and its polarisation can provide important constraints on physical properties of the flaring environment and associated accretion event.

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