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首页> 外文期刊>Physical review, D >Black hole discharge: Very-high-energy gamma rays from black hole-neutron star mergers
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Black hole discharge: Very-high-energy gamma rays from black hole-neutron star mergers

机译:黑洞放电:来自黑洞 - 中子星兼并的非常高能量的伽马射线

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摘要

With mass ratio larger than ~5 (which depends on the black hole spin and the star radius), star disruption is not expected for a black hole merging with a neutron star during the final plunge phase. In the late inspiral stage, the black hole is likely charged as it cuts through the magnetic field carried by the neutron star, leaving a temporarily charged black hole after merger. The unstable charged state of the remnant black hole rapidly neutralizes by interacting with the surrounding plasma and photons, which we investigate in first principle by numerically solving a coupled set of Boltzmann equations of 1 + 1 form for nonspinning BH background. The resulting basic picture is as follows. Electrons and positrons are accelerated in the BH electric field, which then lose energy to surrounding soft photons via Compton scattering; more electrons and positrons will be created from pair production as the hard photons colliding with soft photons, or through the Schwinger process in strong electromagnetic fields. The cascade stops when the charged black hole accretes enough opposite charges and becomes neutralized. We find that ~10% (which depends on the soft photon energy and number density) of the total electric energy is carried away to infinity in a time interval ~1 ms by very-high-energy (>50 GeV, the low energy detection threshold of the MAGIC telescope) gamma rays whose spectrum is approximately a power law with spectral index ~-2.3. We expect the discharge picture to be true for spinning charged BHs as well.
机译:质量比大于〜5(取决于黑洞旋转和星半径),在最终插入阶段的中子星合并的黑洞期望明星破坏。在晚期的支持阶段,黑洞可能会充电,因为它通过中子星承受的磁场切割,在合并后留下暂时带电的黑洞。残余黑洞的不稳定带电状态通过与周围的等离子体和光子相互作用而迅速中和,我们首先通过数值求解一组1 + 1形式的耦合的Boltzmann等式来研究,用于Nonspinning BH背景。由此产生的基本图片如下。在BH电场中加速了电子和积极,然后通过Compton散射将能量失去能量到围绕软光子;将根据与软光子碰撞的硬光子或通过强电磁场中的Schwinger工艺来创造更多的电子和正源。当带电的黑洞增加足够相反的电荷并被中和时,级联停止。我们发现〜10%(取决于软光子能量和数量密度)通过非常高能量(> 50 gev,低能量检测,在时间间隔〜1 ms中被传递到无穷大。魔法望远镜的阈值)栅极光线,其频谱大约是具有光谱指标〜-2.3的动力法。我们希望放电图片也适用于纺纱的BHS。

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