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Generation of Magnetic Fields in the Relativistic Shock of Gamma-Ray Burst Sources

机译:伽马射线爆裂源相对论冲击中的磁场产生

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We show that the relativistic two-stream instability can naturally generate strong magnetic fields with 10-5-10-1 of the equipartition energy density, in the collisionless shocks of gamma-ray burst (GRB) sources. The generated fields are parallel to the shock front and fluctuate on the very short scale of the plasma skin depth. The synchrotron radiation emitted from the limb-brightened source image is linearly polarized in the radial direction relative to the source center. Although the net polarization vanishes under circular symmetry, GRB sources should exhibit polarization scintillations as their radio afterglow radiation gets scattered by the Galactic interstellar medium. Detection of polarization scintillations could therefore test the above mechanism for magnetic field generation.
机译:我们表明,相对论两流不稳定性可以自然地产生等分能量密度为10-5-10-1的强磁场,这是在伽马射线爆发(GRB)源的无碰撞冲击中产生的。产生的场平行于激波前沿,并在等离子趋肤深度的极短范围内波动。从四肢发亮的源图像发出的同步加速器辐射在相对于源中心的径向方向上线性偏振。尽管净极化在圆对称性下消失,但是GRB源应表现出极化闪烁,因为它们的无线电余辉辐射被银河星际介质散射。因此,极化闪烁的检测可以测试上述磁场产生的机制。

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