The role of magnetic reconnection on jet/accretion disk systems

被引:63
|
作者
de Gouveia Dal Pino, E. M. [1 ]
Piovezan, P. P. [1 ,2 ]
Kadowaki, L. H. S. [1 ]
机构
[1] Univ Sao Paulo, IAG, BR-05508900 Sao Paulo, Brazil
[2] Max Planck Inst Astrophys, D-85741 Garching, Germany
来源
ASTRONOMY & ASTROPHYSICS | 2010年 / 518卷
基金
巴西圣保罗研究基金会;
关键词
acceleration of particles; accretion; accretion disks; black hole physics; magnetic fields; galaxies: jets; DOMINATED ACCRETION DISKS; GALACTIC NUCLEI; LOW/HARD STATE; RADIO-EMISSION; GRS 1915+105; BLACK-HOLES; YOUNG STARS; MODEL; JETS; TAURI;
D O I
10.1051/0004-6361/200913462
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
Context. It was proposed earlier that the relativistic ejections observed in microquasars could be produced by violent magnetic reconnection episodes at the inner disk coronal region (de Gouveia Dal Pino & Lazarian 2005). Aims. Here we revisit this model, which employs a standard accretion disk description and fast magnetic reconnection theory, and discuss the role of magnetic reconnection and associated heating and particle acceleration in different jet/disk accretion systems, namely young stellar objects (YSOs), microquasars, and active galactic nuclei (AGNs). Methods. In microquasars and AGNs, violent reconnection episodes between the magnetic field lines of the inner disk region and those that are anchored in the black hole are able to heat the coronal/disk gas and accelerate the plasma to relativistic velocities through a diffusive first-order Fermi-like process within the reconnection site that will produce intermittent relativistic ejections or plasmons. Results. The resulting power-law electron distribution is compatible with the synchrotron radio spectrum observed during the outbursts of these sources. A diagram of the magnetic energy rate released by violent reconnection as a function of the black hole (BH) mass spanning 10(9) orders of magnitude shows that the magnetic reconnection power is more than sufficient to explain the observed radio luminosities of the outbursts from microquasars to low luminous AGNs. In addition, the magnetic reconnection events cause the heating of the coronal gas, which can be conducted back to the disk to enhance its thermal soft X-ray emission as observed during outbursts in microquasars. The decay of the hard X-ray emission right after a radio flare could also be explained in this model due to the escape of relativistic electrons with the evolving jet outburst. In the case of YSOs a similar magnetic configuration can be reached that could possibly produce observed X-ray flares in some sources and provide the heating at the jet launching base, but only if violent magnetic reconnection events occur with episodic, very short-duration accretion rates which are similar to 100-1000 times larger than the typical average accretion rates expected for more evolved (T Tauri) YSOs.
引用
收藏
页数:9
相关论文
共 50 条
  • [41] Magnetic pressure support and accretion disk spectra
    Blaes, Omer M.
    Davis, Shane W.
    Hirose, Shigenobu
    Krolik, Julian H.
    Stone, James M.
    ASTROPHYSICAL JOURNAL, 2006, 645 (02): : 1402 - 1407
  • [42] Observation of a Reversal of Breakout Reconnection Preceding a Jet: Evidence of Oscillatory Magnetic Reconnection?
    Hong, Junchao
    Yang, Jiayan
    Chen, Huadong
    Bi, Yi
    Yang, Bo
    Chen, Hechao
    ASTROPHYSICAL JOURNAL, 2019, 874 (02):
  • [43] ACCRETION BY NEUTRON STARS - ACCRETION DISK AND ROTATING MAGNETIC-FIELD
    ANZER, U
    BORNER, G
    ASTRONOMY & ASTROPHYSICS, 1980, 83 (1-2) : 133 - 139
  • [44] DISTRIBUTION AND FLOW OF MAGNETIC ENERGY IN AN ACCRETION DISK
    SCHRAMKOWSKI, GP
    VANNIEKERK, ECM
    HOYNG, P
    ACHTERBERG, A
    SPACE SCIENCE REVIEWS, 1994, 68 (1-4) : 329 - 330
  • [45] The influence of magnetic field on accretion disk evaporation
    Qian, Lei
    Liu, B. F.
    Wu, Xue-Bing
    CENTRAL ENGINE OF ACTIVE GALACTIC NUCLEI, 2007, 373 : 139 - +
  • [46] DISK ACCRETION ONTO MAGNETIC NEUTRON STARS
    Li Xiangdong
    Wang ZhenruDepartment of Astronomy Nanjing University Nanjing PRC
    南京大学学报(自然科学版), 1995, (01) : 178 - 179
  • [47] A numerical study of magnetic buoyancy in an accretion disk
    Rozycka, M
    Bodenheimer, P
    Lin, DNC
    ASTROPHYSICAL JOURNAL, 1996, 459 (01): : 371 - 383
  • [48] Theory of Disk Accretion onto Magnetic Stars
    Lai, Dong
    PHYSICS AT THE MAGNETOSPHERIC BOUNDARY, 2014, 64
  • [49] MAGNETIC-FIELD RECONNECTION IN DIFFERENTIALLY ROTATING ACCRETION DISKS
    GILDEN, D
    TAJIMA, T
    IAU SYMPOSIA, 1985, (107): : 477 - 482
  • [50] Jet formation: magnetic fields and accretion discs
    Casse, F
    Ferreira, J
    PARTICLES AND FIELDS IN RADIO GALAXIES, 2002, 250 : 27 - 31