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首页> 外文期刊>Journal of Experimental and Theoretical Physics >Absorption of gamma-ray photons in a vacuum neutron star magnetosphere: II. The formation of 'lightnings'
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Absorption of gamma-ray photons in a vacuum neutron star magnetosphere: II. The formation of 'lightnings'

机译:真空中子星磁层中γ射线光子的吸收:II。形成“闪电”

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The absorption of a high-energy photon from the external cosmic gamma-ray background in the inner neutron star magnetosphere triggers the generation of a secondary electron-positron plasma and gives rise to a lightning-a lengthening and simultaneously expanding plasma tube. It propagates along magnetic fields lines with a velocity close to the speed of light. The high electron-positron plasma generation rate leads to dynamical screening of the longitudinal electric field that is provided not by charge separation but by electric current growth in the lightning. The lightning radius is comparable to the polar cap radius of a radio pulsar. The number of electron-positron pairs produced in the lightning in its lifetime reaches 10 ~(28). The density of the forming plasma is comparable to or even higher than that in the polar cap regions of ordinary pulsars. This suggests that the radio emission from individual lightnings can be observed. Since the formation time of the radio emission is limited by the lightning lifetime, the possible single short radio bursts may be associated with rotating radio transients (RRATs).
机译:内部中子星磁层中来自外部宇宙伽马射线背景的高能光子的吸收触发了次级电子-正电子等离子体的产生,并产生了闪电-延长并同时扩展了等离子体管。它沿着磁场线以接近光速的速度传播。高电子-正电子等离子体的产生速率导致对纵向电场的动态屏蔽,这不是由电荷分离而是由闪电中的电流增长提供的。雷电半径与无线电脉冲星的极帽半径相当。闪电在其寿命中产生的电子-正电子对的数量达到10〜(28)。形成等离子体的密度与普通脉冲星的极帽区域相当或什至更高。这表明可以观察到来自单个闪电的无线电发射。由于无线电发射的形成时间受到雷电寿命的限制,因此可能的单个短无线电突发可能与旋转的无线电瞬变(RRAT)相关。

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