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首页> 外文期刊>The Astrophysical journal >Three-dimensional Model Of Broadband Emission From Supernova Remnants Undergoing Nonlinear Diffusive Shock Acceleration
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Three-dimensional Model Of Broadband Emission From Supernova Remnants Undergoing Nonlinear Diffusive Shock Acceleration

机译:超新星残余物进行非线性扩散冲击加速的宽带发射三维模型

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摘要

We present a three-dimensional model of supernova remnants (SNRs) in which the hydrodynamical evolution of the remnant is modeled consistently with nonlinear diffusive shock acceleration occurring at the outer blast wave. The model includes particle escape and diffusion outside of the forward shock and particle interactions with arbitrary distributions of external ambient material, such as molecular clouds. We include synchrotron emission and cooling, bremsstrahlung radiation, neutral pion production, and inverse Compton (IC) and Coulomb energy loss. Broadband spectra have been calculated for typical parameters, including dense regions of gas external to a 1000 yr old SNR. In this paper, we describe the details of our model, but do not attempt a detailed fit to any specific remnant. We also do not include magnetic field amplification (MFA), even though this effect may be important in some young remnants. Our aim is to develop a flexible platform that can be generalized to include effects such as MFA, and that can be easily adapted to various SNR environments, including Type Ia SNRs, which explode in a constant-density medium, and Type II SNRs, which explode in a presupernova wind. When applied to a specific SNR, our model will predict cosmic-ray spectra and multiwavelength morphology in projected images for instruments with varying spatial and spectral resolutions. We show examples of these spectra and images and emphasize the importance of measurements in the hard X-ray, GeV, and TeV gamma-ray bands for investigating key ingredients in the acceleration mechanism, and for deducing whether or not TeV emission is produced by IC from electrons or pion decay from protons.
机译:我们提出了一个超新星残留物(SNR)的三维模型,其中残留物的水动力演化与外部爆炸波处发生的非线性扩散冲击加速度一致地建模。该模型包括正向冲击之外的粒子逸散和扩散,以及粒子与外部环境材料(例如分子云)的任意分布的相互作用。我们包括同步加速器的发射和冷却,致辐射,中性介子的产生以及逆康普顿(IC)和库仑能量损失。已为典型参数计算了宽带频谱,包括1000年老SNR外部的气体密集区域。在本文中,我们描述了模型的细节,但没有尝试对任何特定的剩余物进行详细拟合。我们也没有包括磁场放大(MFA),即使这种影响在某些年轻残余物中可能很重要。我们的目标是开发一个灵活的平台,该平台可以概括为包括MFA之类的效果,并且可以轻松适应各种SNR环境,包括在恒定密度介质中爆炸的Ia型SNR和II型SNR。在超新星前的风中爆炸。当应用于特定的SNR时,我们的模型将预测具有不同空间和光谱分辨率的仪器的投影图像中的宇宙射线光谱和多波长形态。我们展示了这些光谱和图像的示例,并强调了在硬X射线,GeV和TeVγ射线带中进行测量的重要性,以研究加速机制中的关键成分,并推论出IC是否产生TeV发射电子或介子产生的质子衰减。

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