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首页> 外文期刊>The Astrophysical Journal. Letters >ION INJECTION AT QUASI-PARALLEL SHOCKS SEEN BY THE CLUSTER SPACECRAFT
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ION INJECTION AT QUASI-PARALLEL SHOCKS SEEN BY THE CLUSTER SPACECRAFT

机译:簇空间工艺在准平行冲击下注入离子

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Collisionless shocks in space plasma are known to be capable of accelerating ions to very high energies through diffusive shock acceleration (DSA). This process requires an injection of suprathermal ions, but the mechanisms producing such a suprathermal ion seed population are still not fully understood. We study acceleration of solar wind ions resulting from reflection off short large-amplitude magnetic structures (SLAMSs) in the quasi-parallel bow shock of Earth using in situ data from the four Cluster spacecraft. Nearly specularly reflected solar wind ions are observed just upstream of a SLAMS. The reflected ions are undergoing shock drift acceleration (SDA) and obtain energies higher than the solar wind energy upstream of the SLAMS. Our test particle simulations show that solar wind ions with lower energy are more likely to be reflected off the SLAMS, while high-energy ions pass through the SLAMS, which is consistent with the observations. The process of SDA at SLAMSs can provide an effective way of accelerating solar wind ions to suprathermal energies. Therefore, this could be a mechanism of ion injection into DSA in astrophysical plasmas.
机译:众所周知,空间等离子体中的无碰撞冲击能够通过扩散冲击加速度(DSA)将离子加速到非常高的能量。该过程需要注入超热离子,但是产生这种超热离子种子群体的机理仍未完全理解。我们使用来自四个星团航天器的原位数据,研究了地球准平行弓形激波中短大振幅磁性结构(SLAMS)反射引起的太阳风离子加速度。在SLAMS的上游观察到近乎镜面反射的太阳风离子。反射离子正经历激波漂移加速(SDA),并且获得的能量高于SLAMS上游的太阳风能。我们的测试粒子模拟显示,具有较低能量的太阳风离子更可能从SLAMS反射,而高能离子则通过SLAMS,这与观察结果一致。 SLAMS上的SDA处理可以提供一种将太阳风离子加速为超热能的有效方法。因此,这可能是天体等离子体中离子注入DSA的机制。

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