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首页> 外文期刊>The Astrophysical journal >VALIDATION OF THE CORONAL THICK TARGET SOURCE MODEL
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VALIDATION OF THE CORONAL THICK TARGET SOURCE MODEL

机译:冠状粗靶源模型的验证

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摘要

We present detailed 3D modeling of a dense, coronal thick-target X-ray flare using the GX Simulator tool, photospheric magnetic measurements, and microwave imaging and spectroscopy data. The developed model offers a remarkable agreement between the synthesized and observed spectra and images in both X-ray and microwave domains, which validates the entire model. The flaring loop parameters are chosen to reproduce the emission measure, temperature, and the nonthermal electron distribution at low energies derived from the X-ray spectral fit, while the remaining parameters, unconstrained by the X-ray data, are selected such as to match the microwave images and total power spectra. The modeling suggests that the accelerated electrons are trapped in the coronal part of the flaring loop, but away from where the magnetic field is minimal, and, thus, demonstrates that the data are clearly inconsistent with electron magnetic trapping in the weak diffusion regime mediated by the Coulomb collisions. Thus, the modeling supports the interpretation of the coronal thick-target sources as sites of electron acceleration in flares and supplies us with a realistic 3D model with physical parameters of the acceleration region and flaring loop.
机译:我们将使用GX Simulator工具,光球磁测量以及微波成像和光谱数据对密集的日冕厚目标X射线耀斑进行详细的3D建模。所开发的模型在X射线和微波域的合成光谱和观察光谱与图像之间提供了显着的一致性,从而验证了整个模型。选择扩口回路参数以重现发射量度,温度和从X射线光谱拟合得出的低能量下的非热电子分布,同时选择不受X射线数据约束的其余参数以匹配微波图像和总功率谱。该模型表明,加速的电子被捕获在喇叭形环的冠状部分中,但远离磁场最小的地方,因此,证明了在由M介导的弱扩散机制中,数据显然与电子磁捕获不一致。库仑碰撞。因此,建模支持将冠状厚目标源解释为火炬中电子加速的位置,并为我们提供了具有加速区域和火炬环物理参数的逼真的3D模型。

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