...
首页> 外文期刊>Astronomy and astrophysics >What brakes the Crab pulsar?
【24h】

What brakes the Crab pulsar?

机译:是什么制动了螃蟹脉冲星?

获取原文
   

获取外文期刊封面封底 >>

       

摘要

Context. Optical observations provide convincing evidence that the optical phase of the Crab pulsar follows the radio one closely. Since optical data do not depend on dispersion measure variations, they provide a robust and independent confirmation of the radio timing solution. Aims. The aim of this paper is to find a global mathematical description of Crab pulsar’s phase as a function of time for the complete set of published Jodrell Bank radio ephemerides (JBE) in the period 1988 ? 2014. Methods. We apply the mathematical techniques developed for analyzing optical observations to the analysis of JBE. We break the whole period into a series of episodes and express the phase of the pulsar in each episode as the sum of two analytical functions. The first function is the best-fitting local braking index law, and the second function represents small residuals from this law with an amplitude of only a few turns, which rapidly relaxes to the local braking index law. Results. From our analysis, we demonstrate that the power law index undergoes “instantaneous” changes at the time of observed jumps in rotational frequency (glitches). We find that the phase evolution of the Crab pulsar is dominated by a series of constant braking law episodes, with the braking index changing abruptly after each episode in the range of values between 2.1 and 2.6. Deviations from such a regular phase description behave as oscillations triggered by glitches and amount to fewer than 40 turns during the above period, in which the pulsar has made more than 2 × 10~(10) turns. Conclusions. Our analysis does not favor the explanation that glitches are connected to phenomena occurring in the interior of the pulsar. On the contrary, timing irregularities and changes in slow down rate seem to point to electromagnetic interaction of the pulsar with the surrounding environment.
机译:上下文。光学观测结果提供了令人信服的证据,表明蟹状脉冲星的光学相位紧跟无线电波。由于光学数据不依赖于色散量度的变化,因此它们为无线电定时解决方案提供了可靠且独立的确认。目的本文的目的是找到1988年完整的Jodrell Bank广播星历表(JBE)集合的蟹形脉冲星相位随时间变化的全球数学描述。 2014。方法。我们将为分析光学观测而开发的数学技术应用于JBE的分析。我们将整个时期分为一系列事件,并将每个事件中脉冲星的相位表示为两个分析函数的总和。第一个函数是最合适的局部制动指数定律,第二个函数代表该定律的少量残差,振幅只有几转,迅速地放松到了局部制动指数定律。结果。通过我们的分析,我们证明了在观察到旋转频率(毛刺)跳跃时,幂律指数经历了“瞬时”变化。我们发现,螃蟹脉冲星的相位演变主要由一系列恒定的制动定律事件决定,制动指数在每次事件后在2.1到2.6之间的范围内突然改变。偏离此类常规相位描述的行为表现为由毛刺触发的振荡,并且在上述期间内脉冲发生器的旋转次数超过2×10〜(10),小于40匝。结论。我们的分析不赞成将故障与脉冲星内部发生的现象联系起来的解释。相反,时间上的不规则性和减慢速度的变化似乎表明脉冲星与周围环境的电磁相互作用。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号