论文标题
研究通过热X射线特性从超新星残留物中高能颗粒的逃生时间尺度的研究
Study on the escape timescale of high-energy particles from supernova remnants through thermal X-ray properties
论文作者
论文摘要
在这十年中,GEV/TEV伽马射线对几个超新星残留物(SNR)的观察表明,加速颗粒正在从其加速位点逃脱。但是,它们何时以及如何从SNR效率中逃脱尚待理解。最近的研究表明,粒子逃逸可能会随SNR的热等离子体年龄而发展。在本文中,我们使用热X射线特性和伽马射线光谱提出了一项系统研究,对粒子逃逸的时间演变。 我们使用了与GEV/TEV伽马射线排放相关的38个SNR。我们使用指数截止功率定律和断裂功率定律模型在伽马射线光谱上进行了光谱配件,以估计指数截止或断裂能,这两者都是粒子逃脱的指标。在等离子体年龄上伽马射线截止/断裂能的图显示出与粒子简单理论逃脱的趋势相似的趋势,在这种情况下,冲击与薄星间介质或云层相互作用的条件下。粒子逃逸时间尺度估计为$ \ sim $ 100 kyr,因为降低了与血浆年龄的约束质子总能量的趋势。数据的截止/断裂能的大量分散可能会表明粒子逃生环境的内在种类。这可能是在地球上测量的复杂银河宇宙射线光谱形状的原因。
In this decade, GeV/TeV gamma-ray observations of several supernova remnants (SNRs) have implied that accelerated particles are escaping from their acceleration sites. However, when and how they escape from the SNR vicinities are yet to be understood. Recent studies have suggested that the particle escape might develop with thermal plasma ages of the SNRs. In this paper, we present a systematic study on time evolution of particle escape using thermal X-ray properties and gamma-ray spectra. We used 38 SNRs which associate with GeV/TeV gamma-ray emissions. We conducted spectral fittings on the gamma-ray spectra using exponential cutoff power law and broken power law models to estimate the exponential cutoff or the break energies, both of which are indicators of particle escape. The plots of the gamma-ray cutoff/break energies over the plasma ages show similar tendencies to those predicted by simple theories of the particle escape under conditions in which a shock is interacting with thin interstellar medium or clouds. The particle escape timescale is estimated as $\sim$100 kyr from decreasing trends of the total energy of the confined protons with the plasma age. The large dispersions of the cutoff/break energies of the data may suggest an intrinsic variety of particle escape environments. This might be the cause of the complicated Galactic cosmic-ray spectral shape measured on Earth.