论文标题

天体物理粉尘晶粒对宇宙射线限制的影响

The impact of astrophysical dust grains on the confinement of cosmic rays

论文作者

Squire, Jonathan, Hopkins, Philip F, Quataert, Eliot, Kempski, Philipp

论文摘要

我们认为,带电的灰尘颗粒可能会严重影响银河宇宙射线的限制和运输。对于〜1000GEV宇宙射线的子gev,小规模的平行alfvén波,通过陀螺仪相互作用的各向同性宇宙射线也具有带电晶粒的陀螺仪。如果灰尘几乎是固定的,就像在大部分星际介质中一样,则灰尘会被灰尘抑制。这将减少宇宙射线通过流不稳定性产生的Alfvén波的幅度,从而增强宇宙射线的传输。在良好的离子区域中,灰尘阻尼速率的幅度比其他机制高约10倍,而其他机制却在与〜GEV宇宙射线相关的尺度上潮湿平行的Alfvén波,这表明灰尘在调节宇宙射线运输方面可以起关键作用。在天体物理情况下,灰尘以超级alfvénic速度在气体中移动,使alfvén波变得不稳定,可以直接散布宇宙射线。这种相互作用有可能产生强大的反馈机制,在该机制中,灰尘通过辐射压力通过气体驱动,然后强烈增强宇宙射线的限制,从而增加了驱动流出的能力。该机制可以在星形星系和活性银河核周围作用于周边培养基。

We argue that charged dust grains could significantly impact the confinement and transport of galactic cosmic rays. For sub-GeV to ~1000GeV cosmic rays, small-scale parallel Alfvén waves, which isotropize cosmic rays through gyro-resonant interactions, are also gyro-resonant with charged grains. If the dust is nearly stationary, as in the bulk of the interstellar medium, Alfvén waves are damped by dust. This will reduce the amplitude of Alfvén waves produced by the cosmic rays through the streaming instability, thus enhancing cosmic-ray transport. In well-ionized regions, the dust damping rate is larger by a factor of ~10 than other mechanisms that damp parallel Alfvén waves at the scales relevant for ~GeV cosmic rays, suggesting that dust could play a key role in regulating cosmic-ray transport. In astrophysical situations in which the dust moves through the gas with super-Alfvénic velocities, Alfvén waves are rendered unstable, which could directly scatter cosmic rays. This interaction has the potential to create a strong feedback mechanism where dust, driven through the gas by radiation pressure, then strongly enhances the confinement of cosmic rays, increasing their capacity to drive outflows. This mechanism may act in the circumgalactic medium around star-forming galaxies and active galactic nuclei.

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