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Bow Shocks from Neutron Stars: Scaling Laws and Hubble Space Telescope Observations of the Guitar Nebula

机译:中子星的弓震动:标度定律和哈勃太空望远镜对吉他星云的观测

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The interaction of high-velocity neutron stars with the interstellar medium produces bow shock nebulae, in which the relativistic neutron star wind is confined by ram pressure. We present multiwavelength observations of the Guitar Nebula, including narrowband Hα imaging with Hubble Space Telescope (HST) WFPC2, which resolves the head of the bow shock. The HST observations are used to fit for the inclination of the pulsar velocity vector to the line of sight and to determine the combination of spin-down energy loss, velocity, and ambient density that sets the scale of the bow shock. We find that the velocity vector is most likely in the plane of the sky. We use the Guitar Nebula and other observed neutron star bow shocks to test scaling laws for their size and Hα emission, discuss their prevalence, and present criteria for their detectability in targeted searches. The set of Hα bow shocks shows remarkable consistency, in spite of the expected variation in ambient densities and orientations. Together, they support the assumption that a pulsar's spin-down energy losses are carried away by a relativistic wind that is indistinguishable from being isotropic. Comparison of Hα bow shocks with X-ray and nonthermal radio-synchrotron bow shocks produced by neutron stars indicates that the overall shape and scaling is consistent with the same physics. It also appears that nonthermal radio emission and Hα emission are mutually exclusive in the known objects and perhaps in all objects.
机译:高速中子星与星际介质的相互作用会产生弓激波星云,其中相对论中子星风受撞击压力的限制。我们介绍了吉他星云的多波长观测结果,其中包括用哈勃太空望远镜(HST)WFPC2进行的窄带Hα成像,它可以解决弓首震荡的问题。 HST观测值用于使脉冲星速度矢量相对于视线的倾斜度合适,并确定向下旋转的能量损失,速度和环境密度的组合,从而确定船首冲击的规模。我们发现速度矢量最有可能在天空平面中。我们使用吉它星云和其他观察到的中子星弓冲击来测试其大小和Hα发射的缩放定律,讨论其流行程度,并提出针对目标搜索的可检测性标准。尽管预期的环境密度和方向会发生变化,但Hα弓形激波组仍具有出色的一致性。他们共同支持这样一个假设,即脉冲星的旋转能量损失被相对论风带走,而相对论风与各向同性是无法区分的。将Hα弓形激波与X射线和中子星产生的非热辐射同步加速器弓形激波进行比较,表明总体形状和结垢与相同的物理学一致。还似乎非热无线电发射和Hα发射在已知对象中甚至在所有对象中都是互斥的。

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