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活动星系。超大质量黑洞喷流基底中的强磁场。

Active galaxies. A strong magnetic field in the jet base of a supermassive black hole.

机构信息

Department of Earth and Space Sciences, Chalmers University of Technology, Onsala Space Observatory, SE-43992, Onsala, Sweden.

出版信息

Science. 2015 Apr 17;348(6232):311-4. doi: 10.1126/science.aaa1784.

Abstract

Active galactic nuclei (AGN) host some of the most energetic phenomena in the universe. AGN are thought to be powered by accretion of matter onto a rotating disk that surrounds a supermassive black hole. Jet streams can be boosted in energy near the event horizon of the black hole and then flow outward along the rotation axis of the disk. The mechanism that forms such a jet and guides it over scales from a few light-days up to millions of light-years remains uncertain, but magnetic fields are thought to play a critical role. Using the Atacama Large Millimeter/submillimeter Array (ALMA), we have detected a polarization signal (Faraday rotation) related to the strong magnetic field at the jet base of a distant AGN, PKS 1830-211. The amount of Faraday rotation (rotation measure) is proportional to the integral of the magnetic field strength along the line of sight times the density of electrons. The high rotation measures derived suggest magnetic fields of at least tens of Gauss (and possibly considerably higher) on scales of the order of light-days (0.01 parsec) from the black hole.

摘要

活动星系核 (AGN) 是宇宙中能量最强大的天体之一。人们认为 AGN 的能量来源于物质在围绕超大质量黑洞旋转的盘中的吸积。喷流可以在黑洞事件视界附近获得能量提升,然后沿着磁盘的旋转轴向外流动。形成这种喷流并引导其跨越从几光天到数百万光年的尺度的机制尚不确定,但磁场被认为起着关键作用。利用阿塔卡马大型毫米/亚毫米波阵(ALMA),我们探测到了遥远活动星系核 PKS 1830-211 的喷流底部与强磁场相关的偏振信号(法拉第旋转)。法拉第旋转量(旋转量)与沿视线方向的磁场强度积分乘以电子密度成正比。所得到的高旋转量表明,在距黑洞约光天(0.01 秒差距)的尺度上,磁场至少有数十高斯(可能更高)。

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