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Polarization lightcurves and position angle variation of beamed $\gamma$-ray bursts

机译:光束\\γ$脉冲串的偏振光曲线和位置角变化

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摘要

The recently detected linear polarization in the optical lightcurve of GRB 990510 renewed the interest on how polarization can be produced in gamma-ray burst fireballs. Here we present a model based on the assumption that we are seeing a collimated fireball, observed slightly off-axis. This introduces some degree of anisotropy, and makes it possible to observe a linearly polarized flux even if the magnetic field is completely tangled in the plane orthogonal to the line of sight. We construct the lightcurve of the polarization flux, showing that it is always characterized by two maxima, with the polarization position angle changing by 90 deg. between the first and the second maximum. The very same geometry here assumed implies that the total flux initially decays in time as a power law, but gradually steepens as the bulk Lorentz factor of the fireball decreases.
机译:最近在GRB 990510的光学曲线中检测到的线性偏振,重新引起了人们对如何在伽马射线爆火球中产生偏振的兴趣。在这里,我们基于一个假设,即我们看到一个准直的火球,稍微偏轴观察,提出了一个模型。这引入了一定程度的各向异性,并且即使磁场在与视线正交的平面中完全纠缠在一起,也可以观察到线性极化的通量。我们构造了偏振通量的光曲线,表明它始终以两个最大值为特征,偏振位置角变化了90度。在第一个最大值和第二个最大值之间。此处假设的几何形状非常相同,这意味着总通量最初会随时间幂次衰减,但随着火球的整体洛伦兹因子减小而逐渐变陡。

著录项

  • 作者

    Ghisellini, G; Lazzati, D;

  • 作者单位
  • 年度 1999
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
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