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LONG GAMMA-RAY TRANSIENTS FROM COLLAPSARS

机译:COLLAPSARS的长伽玛射线瞬变

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In the collapsar model for common gamma-ray bursts (GRBs), the formation of a centrifugally supported disk occurs during the first ~10 s following the collapse of the iron core in a massive star. This only occurs in a small fraction of massive stellar deaths, however, and requires unusual conditions. A much more frequent occurrence could be the death of a star that makes a black hole and a weak or absent outgoing shock, but in a progenitor that only has enough angular momentum in its outermost layers to make a disk. We consider several cases where this is likely to occur—blue supergiants with low mass-loss rates, tidally interacting binaries involving either helium stars or giant stars, and the collapse to a black hole of very massive pair-instability supernovae. These events have in common the accretion of a solar mass or so of material through a disk over a period much longer than the duration of a common GRB. A broad range of powers is possible, 1047-1050?erg s–1, and this brightness could be enhanced by beaming. Such events were probably more frequent in the early universe where mass-loss rates were lower. Indeed, this could be one of the most common forms of gamma-ray transients in the universe and could be used to study first generation stars. Several events could be active in the sky at any one time. Recent examples of this sort of event may have been the Swift transients Sw-1644+57, Sw-2058+0516, and GRB 101225A.
机译:在用于普通伽马射线爆发(GRB)的collapsar模型中,离心支撑盘的形成发生在大质量恒星中铁芯坍塌后的前约10 s内。但是,这仅发生在大规模恒星死亡的一小部分中,并且需要特殊条件。发生频率高得多的事件可能是恒星死亡,该恒星产生黑洞,而发出的冲击微弱或不存在,但在其最外层仅具有足够角动量以制作圆盘的祖先中。我们考虑了可能发生这种情况的几种情况:质量损失率低的蓝色超巨星,与氦恒星或巨型恒星发生潮汐相互作用的双星,以及坍塌成非常大的对不稳定超新星的黑洞。这些事件的共同之处是,在比普通GRB持续时间长得多的时间段内,太阳质量的物质或物质会通过磁盘积聚。 1047-1050?er s–1的功率范围很广,可以通过发出光束来增强此亮度。在质量损失率较低的早期宇宙中,此类事件可能更为频繁。确实,这可能是宇宙中最常见的伽马射线瞬变形式之一,可用于研究第一代恒星。随时可能有几件事在空中发生。此类事件的最新示例可能是快速瞬变Sw-1644 + 57,Sw-2058 + 0516和GRB 101225A。

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