论文标题
X射线通过黑寡妇和红带产生的高能内部冲击发射
X-ray Through Very-High-Energy Intrabinary Shock Emission from Black Widows and Redbacks
论文作者
论文摘要
黑寡妇和红带系统是紧凑的二进制物,其中毫秒的脉冲星热量,甚至可以通过其相对论颗粒和辐射的强风消灭其低质量伴侣。在这样的系统中,可以作为粒子加速度和相关的非热发射的位点形成插电冲击。我们为选定的蜘蛛二进制组对X射线和伽马射线同步加速器和逆孔仪光谱成分进行建模,包括在轴向对称,稳态方法中的扩散,对流和辐射能损耗。我们的新多区域代码同时产生能量依赖的光曲线和轨道相分辨的光谱。使用参数研究并匹配观察到的X射线光谱和光曲线,以及在可用的Fermi大面积望远镜光谱,并使用同步加速器组件,我们可以约束某些模型参数。对于PSR J1723--2837,这些是沿电击切线移动的等离子体的磁场和较大的流速,冲击加速度的效率以及对Pulsar加速的成对和频谱。这可以对预期的高能和非常高的能量伽马射线通量进行更强大的预测。我们发现,附近有热或耀斑的同伴的脉冲星可能是Cherenkov望远镜阵列的有希望的目标。此外,许多蜘蛛可能对未来的MEV波段任务(例如Amego和E-Astrogam)具有重大兴趣。
Black widow and redback systems are compact binaries in which a millisecond pulsar heats and may even ablate its low-mass companion by its intense wind of relativistic particles and radiation. In such systems, an intrabinary shock can form as a site of particle acceleration and associated non-thermal emission. We model the X-ray and gamma-ray synchrotron and inverse-Compton spectral components for select spider binaries, including diffusion, convection and radiative energy losses in an axially-symmetric, steady-state approach. Our new multi-zone code simultaneously yields energy-dependent light curves and orbital phase-resolved spectra. Using parameter studies and matching the observed X-ray spectra and light curves, and Fermi Large Area Telescope spectra where available, with a synchrotron component, we can constrain certain model parameters. For PSR J1723--2837 these are notably the magnetic field and bulk flow speed of plasma moving along the shock tangent, the shock acceleration efficiency, and the multiplicity and spectrum of pairs accelerated by the pulsar. This affords a more robust prediction of the expected high-energy and very-high-energy gamma-ray flux. We find that nearby pulsars with hot or flaring companions may be promising targets for the future Cherenkov Telescope Array. Moreover, many spiders are likely to be of significant interest to future MeV-band missions such as AMEGO and e-ASTROGAM.