黑洞是宇宙的发电机

R. Blandford
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引用次数: 0

摘要

在一次会议上介绍了大质量黑洞和恒星黑洞在丰富多样的宇宙源中为非热活动提供动力的作用。总结了磁化旋转黑洞的相关性质,并简要描述了它们在星系核内的射电响度和Fanaroff-Riley类的观测表达式。讨论了吸积模式与黑洞影响范围外质量供给的速率和方式的关系。有人认为,吸积盘的流体磁流出物通常可达60年的半径,它们可能是发射线气体的来源。这些喷流对准了相对论性喷流,相对论性喷流可能是以电磁形式产生的,但当它们夹带气体穿过边界层时变成了磁流体,而边界层是大多数初始非热辐射发生的地方。有人提出,靠近空穴的粒子加速强调质子通道,这使得二级粒子对能够以远高于直接加速的能量产生。这些对辐射出同步加速器伽马射线,这些射线可以沿着喷流逃逸,因为流出物有效地屏蔽了产生对的软光子。射流受到螺旋不稳定性的影响,这可能会纠缠它们的磁场,并可能摧毁它们。喷流应该成为等离子体主导,通过间歇性的“磁致发光”解开磁场,导致整个长度的非热发射。强大的射流在源的末端的“热点”处保持超音速;较弱的射流变成亚音速羽流或气泡。在接下来的十年里,人们对喷气式飞机的性质和操作有了更多的了解,前景非常光明。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Black Holes as Cosmic Dynamos
An introduction is given to a meeting on the role of massive and stellar black holes in powering non-thermal activity in a rich variety of cosmic sources. Relevant properties of magnetized, spinning black holes are summarized and their observational expression, within galactic nuclei, in terms of radio loudness and Fanaroff-Riley class, is briefly described. The dependence of the accretion mode on the rate and manner of the mass supply beyond the black hole sphere of influence is also discussed. It is argued that hydromagnetic outflows from accretion disks are generally expected over as many as six decades of radius and that they may be the source of emission line gas. These outflows collimate the relativistic jets which are probably generated in an electromagnetic form but become hydromagnetic as they entrain gas through boundary layers where most of the initial nonthermal emission occurs. It is proposed that the particle acceleration close to the hole emphasizes the proton channel which allows secondary pairs to be created at far higher energies than is possible from direct acceleration. These pairs radiate synchrotron gamma-rays which can escape along the jet because the outflow effectively shields them from pair-producing, soft photons. Jets are subject to helical instabilities which can tangle their magnetic field and may destroy them. The jet should become plasma-dominated through intermittent, "magnetoluminescent" untangling of the field which causes nonthermal emission all along its length. Powerful jets remain supersonic out to the "hot spots" at the extremities of the source; weaker jets become subsonic plumes or bubbles. The prospects for learning much more about the nature and operation of jets over the next decade are excellent.
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