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A Universal Scaling for the Energetics of Relativistic Jets From Black Hole Systems

机译:黑洞系统相对论射流能量的通用尺度

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摘要

Black holes generate collimated, relativistic jets which have been observed in gamma-ray bursts (GRBs), microquasars, and at the center of some galaxies (active galactic nuclei; AGN). How jet physics scales from stellar black holes in GRBs to the supermassive ones in AGNs is still unknown. Here we show that jets produced by AGNs and GRBs exhibit the same correlation between the kinetic power carried by accelerated particles and the gamma-ray luminosity, with AGNs and GRBs lying at the low and high-luminosity ends, respectively, of the correlation. This result implies that the efficiency of energy dissipation in jets produced in black hole systems is similar over 10 orders of magnitude in jet power, establishing a physical analogy between AGN and GRBs.
机译:黑洞产生准直的相对论射流,在伽马射线暴(GRB),微类星体和某些星系中心(活跃的银河核; AGN)中已观察到。射流物理学如何从GRB中的恒星黑洞扩展到AGN中的超大质量黑洞。在这里,我们显示了由AGN和GRB产生的射流在加速粒子所携带的动能与伽马射线发光度之间显示出相同的相关性,其中AGN和GRB分别位于相关性的低和高发光度端。该结果表明,黑洞系统产生的射流的能量消耗效率在射流功率的10个数量级上相似,从而在AGN和GRB之间建立了物理类比。

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