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Pulsar-Driven Jets in Supernovae, Gamma-Ray Bursts, and the Universe

机译:超新星,伽马射线爆发和宇宙中的脉冲星驱动喷气机

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The bipolarity of Supernova 1987A can be understood through its very early light curve from the CTIO 0.4 m telescope and IUE FES and following speckle observations of the “Mystery Spot”. These indicate a beam/jet of light/particles, with initial collimation factors >104and velocities >0.95 c, involving up to 10−5 M⊙interacting with circumstellar material. These can be produced by a model of pulsar emission from polarization currents induced/(modulated faster than c) beyond the pulsar light cylinder by the periodic electromagnetic field (supraluminally induced polarization currents (SLIP)). SLIP accounts for the disruption of supernova progenitors and their anomalous dimming at cosmological distances, jets from Sco X-1 and SS 433, the lack/presence of pulsations from the high-/low-luminosity low-mass X-ray binaries, and long/short gamma-ray bursts, and it predicts that their afterglows are thepulsedoptical-ear-infrared emission associated with these pulsars. SLIP may also account for the TeV e+/e−results from PAMELA and ATIC, the WMAP “Haze”/Fermi “Bubbles,” and ther-process. SLIP jets from SNe of the first stars may allow galaxies to form without dark matter and explain the peculiar nongravitational motions between pairs of distant galaxies observed by GALEX.
机译:超新星1987A的双极性可以通过CTIO0.4μm望远镜和IUE FES的早期光曲线以及对“神秘点”的斑点观察来理解。这表明光束/光束/粒子的射流,初始准直因子> 104,速度> 0.95 c,涉及与星际物质相互作用的最高达10-5M⊙。这些可以通过由周期性电磁场(超感应感应极化电流(SLIP))在脉冲星光柱外感应/(比c调制的速度更快)产生的极化电流产生的脉冲星发射模型产生。 SLIP解释了超新星祖细胞的破坏及其在宇宙距离处的异常变暗,来自Sco X-1和SS 433的射流,高/低发光度低质量X射线双星的缺乏/存在以及长时间的存在短伽玛射线爆发,并预测它们的余辉是与这些脉冲星有关的脉冲光学/近红外发射。 SLIP还可以考虑来自PAMELA和ATIC的TeV e + / e-结果,WMAP“阴霾” / Fermi“冒泡”以及处理过程。来自第一批恒星SNe的SLIP喷流可能使星系形成而没有暗物质,并解释了GALEX观测到的成对的遥远星系之间的特殊非引力运动。

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