ON THE MECHANISM OF HARD X-RAY EMISSION FROM MAGNETARS

被引:116
作者
Beloborodov, Andrei M. [1 ,2 ]
机构
[1] Columbia Univ, Dept Phys, New York, NY 10027 USA
[2] Columbia Univ, Columbia Astrophys Lab, New York, NY 10027 USA
关键词
plasmas; stars: magnetic field; stars: neutron; RESONANT CYCLOTRON SCATTERING; HIGH-ENERGY CHARACTERISTICS; SOFT GAMMA REPEATERS; PHOTON DISPERSION; SPIN-DOWN; ELECTRODYNAMICS; MAGNETOSPHERES; LIGHT; FIELD; RXTE;
D O I
10.1088/0004-637X/762/1/13
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
Persistent activity of magnetars is associated with electric discharge that continually injects relativistic particles into the magnetosphere. Large active magnetic loops around magnetars must be filled with outflowing particles that interact with radiation via resonant scattering and spawn electron-positron pairs. The outflow energy is processed into copious e(+/-) until the plasma enters outer parts of the loop where the magnetic field is reduced below 10(13) G. In the outer zone, photons scattered by the outflow do not convert to e(+/-) pairs and the outflow radiates its energy away. The escaping radiation forms a distinct hard X-ray peak in the magnetar spectrum. It has the following features: (1) its luminosity L = 10(35)-10(36) erg s(-1) can easily exceed the thermal luminosity from the magnetar surface, (2) its spectrum extends from 10 keV to the MeV band with a hard spectral slope, which depends on the object inclination to the line of sight, (3) the anisotropic hard X-ray emission exhibits strong pulsations as the magnetar spins, (4) the emission spectrum typically peaks around 1 MeV, but the peak position significantly oscillates with the spin period, (5) the emission is dominated by the extraordinary polarizationmode at photon energies below similar to 1 MeV, and (6) the decelerated pairs accumulate and annihilate at the top of the magnetic loop, and emit the 511 keV line with luminosity L-ann similar to 0.1 L. Features (1)-(3) agree with available data; (4)-(6) can be tested by future observations.
引用
收藏
页数:15
相关论文
共 34 条
[1]   PHOTON SPLITTING AND PHOTON DISPERSION IN A STRONG MAGNETIC FIELD [J].
ADLER, SL .
ANNALS OF PHYSICS, 1971, 67 (02) :599-&
[2]   Resonant compton upscattering in Anomalous X-ray Pulsars [J].
Baring, Matthew G. ;
Harding, Alice K. .
ASTROPHYSICS AND SPACE SCIENCE, 2007, 308 (1-4) :109-118
[3]   Magnetic photon splitting: Computations of proper-time rates and spectra [J].
Baring, MG ;
Harding, AK .
ASTROPHYSICAL JOURNAL, 1997, 482 (01) :372-376
[4]  
Beloborodov A. M., 2011, ASTROPHYSICS SPACE S, P299
[5]  
Beloborodov A. M., 2012, APJ UNPUB
[6]   Corona of magnetars [J].
Beloborodov, Andrei M. ;
Thompson, Christopher .
ASTROPHYSICAL JOURNAL, 2007, 657 (02) :967-993
[7]   UNTWISTING MAGNETOSPHERES OF NEUTRON STARS [J].
Beloborodov, Andrei M. .
ASTROPHYSICAL JOURNAL, 2009, 703 (01) :1044-1060
[8]   THE EFFECT OF PHOTON CAPTURE AND FIELD-IONIZATION ON HIGH MAGNETIC-FIELD PULSARS [J].
BHATIA, VB ;
CHOPRA, N ;
PANCHAPAKESAN, N .
ASTROPHYSICS AND SPACE SCIENCE, 1988, 150 (01) :181-188
[9]   THOMSON SCATTERING IN A STRONG MAGNETIC FIELD [J].
CANUTO, V ;
LODENQUA.J ;
RUDERMAN, M .
PHYSICAL REVIEW D, 1971, 3 (10) :2303-&
[10]   Detailed high-energy characteristics of AXP 1RXS J170849-400910 -: Probing the magnetosphere using INTEGRAL, RXTE, and XMM-Newton [J].
den Hartog, P. R. ;
Kuiper, L. ;
Hermsen, W. .
ASTRONOMY & ASTROPHYSICS, 2008, 489 (01) :263-279