论文标题
脉动硬X射线天空的整体视图:从积聚和过渡毫秒脉冲星到旋转供电的脉冲星和磁铁
The INTEGRAL view of the pulsating hard X-ray sky: from accreting and transitional millisecond pulsars to rotation-powered pulsars and magnetars
论文作者
论文摘要
在过去的25年中,新一代的X射线卫星在我们对X射线脉冲星的了解中赋予了重大飞跃。积聚和过渡毫秒的脉冲星的发现证明,磁盘积聚可以将中子星旋转至非常高的旋转速度。从几百个旋转驱动的脉冲星检测MEV-GEV脉冲发射,在外部磁层甚至超越外部探测了颗粒加速度。此外,还出现了二十数磁铁的人群。积分通过提供高时间分辨率的仪器到硬X射线/软伽马射线带和具有良好角度分辨率的大型视场,以发现硬X射线瞬变,从而发挥了重要作用。 In this article, we review the main contributions by INTEGRAL to our understanding of the pulsating hard X-ray sky, such as the discovery and characterization of several accreting and transitional millisecond pulsars, the generation of the first catalog of hard X-ray/soft gamma-ray rotation-powered pulsars, the detection of polarization in the hard X-ray emission from the Crab pulsar, and the discovery of persistent hard X-ray emission from几种磁铁。
In the last 25 years, a new generation of X-ray satellites imparted a significant leap forward in our knowledge of X-ray pulsars. The discovery of accreting and transitional millisecond pulsars proved that disk accretion can spin up a neutron star to a very high rotation speed. The detection of MeV-GeV pulsed emission from a few hundreds of rotation-powered pulsars probed particle acceleration in the outer magnetosphere, or even beyond. Also, a population of two dozens of magnetars has emerged. INTEGRAL played a central role to achieve these results by providing instruments with high temporal resolution up to the hard X-ray/soft gamma-ray band and a large field of view imager with good angular resolution to spot hard X-ray transients. In this article, we review the main contributions by INTEGRAL to our understanding of the pulsating hard X-ray sky, such as the discovery and characterization of several accreting and transitional millisecond pulsars, the generation of the first catalog of hard X-ray/soft gamma-ray rotation-powered pulsars, the detection of polarization in the hard X-ray emission from the Crab pulsar, and the discovery of persistent hard X-ray emission from several magnetars.