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Producing ultrastrong magnetic fields in neutron star mergers

机译:在中子星合并中产生超强磁场

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We report an extremely rapid mechanism for magnetic field amplification during the merger of a binary neutron star system. This has implications for the production of the short class of gamma-ray bursts, which recent observations suggest may originate in such mergers. In detailed magnetohydrodynamic simulations of the merger process, the fields are amplified by Kelvin-Helmholtz instabilities beyond magnetar field strength and may therefore represent the strongest magnetic fields in the universe. The amplification occurs in the shear layer that forms between the neutron stars and on a time scale of only 1 millisecond, that is, long before the remnant can collapse into a black hole.
机译:我们报告了在合并中子星系统的过程中磁场放大的极快机制。这对短类别伽马射线爆发的产生有影响,最近的观察表明,这种伽马射线爆发可能源于这种合并。在合并过程的详细磁流体动力学模拟中,开尔文-亥姆霍兹不稳定性放大了磁场,超出了磁场强度,因此可以表示宇宙中最强的磁场。放大作用发生在中子星之间形成的剪切层中,时间尺度只有1毫秒,也就是说,在残余物塌陷成黑洞之前很久。

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