脉冲星风星云CTB 87的多波段非热辐射特性

Yunlu Gong, Liancheng Zhou, Qi Xia, Haiyun Zhang, Jun Fang and Li Zhang
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摘要

脉冲星风星云CTB 87 (G74.9+1.2)是发射能量高于10 TeV γ射线的源之一,由甚能辐射成像望远镜阵列系统望远镜测量。在这项研究中,我们利用费米大面积望远镜收集的约16年的高能γ射线数据,对CTB 87区域的GeV发射进行了重新分析。在0.03-1 TeV的能量范围内,光谱可以用指数为1.34±0.18的幂律模型充分描述,积分能量通量计算为(7.25±1.36)× 10−13 erg cm−2 s−1。基于多波段数据,我们采用时间依赖模型研究了CTB 87的非热发射特性。在该模型中,假设幂律能量分布被打破的粒子不断注入星云。这导致相对论性轻子通过同步辐射和逆康普顿过程产生多波段非热辐射。此外,该模型表明,星云中能量最高的粒子的能量约为2.4 PeV。
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Multiband Nonthermal Radiative Properties of the Pulsar Wind Nebula CTB 87
The pulsar wind nebula CTB 87 (G74.9+1.2) is one of the sources emitting γ-rays with energies higher than 10 TeV, as measured by the Very Energetic Radiation Imaging Telescope Array System telescope. In this study, we undertake a reanalysis of the GeV emission from the CTB 87 region, utilizing ∼16 yr of high-energy γ-ray data collected with the Fermi Large Area Telescope. In the energy range of 0.03–1 TeV, the spectrum can be adequately described by a power-law model with an index of 1.34 ± 0.18, and the integral energy flux is calculated to be (7.25 ± 1.36) × 10−13 erg cm−2 s−1. Based on the multiband data, we have employed a time-dependent model to investigate the nonthermal emission properties of CTB 87. In the model, it is assumed that particles with broken power-law energy distributions are continuously injected into the nebula. This results in multiband nonthermal emission being produced by relativistic leptons via synchrotron radiation and inverse Compton processes. Furthermore, the model suggests an energy of approximately 2.4 PeV for the most energetic particle in the nebula.
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