论文标题
磁重新连接期间压缩浆液中的次级能量
Secondary Energization in Compressing Plasmoids during Magnetic Reconnection
论文作者
论文摘要
浆液 - 在重新连接电流板时自兼而有的磁化准圆形结构 - 以前被认为是能量颗粒的墓地。在本文中,我们证明了浆液在相对论重新连接中塑造粒子能谱中的重要作用(即,使用上游磁化$σ_{\ rm up} \ gg 1 $)。使用$σ_ {\ rm up} = 10 $和$ 100 $的配对等离子体中的二维粒子模拟,我们研究了在压缩等离子体内部发生的二级粒子能量过程。我们证明了浆液的及时生长,而它们的内饰压缩,从而扩大了内部磁场。在分离的浆液中注入的颗粒感觉到的磁场随时间线性增加,从而导致磁矩保守导致粒子能量。对于注入幂律分布函数的粒子,这种能量过程的作用是保守注射幂定律的形状,同时在更高的能量下产生额外的非热尾$ f(e)\ propto e^{ - 3} $跟随指数截止。随时间增加的截止能量会随着时间而增加,因为$ e _ {\ rm cut} \ propto \ sqrt {t} $可以大大超过$σ_{\ rm up} m_e c^2 $。我们在分析上预测二级加速度时间尺度和新兴颗粒能谱的形状,这在某些天体物理系统(例如Blazar Jets)中可能非常重要。
Plasmoids -- magnetized quasi-circular structures formed self-consistently in reconnecting current sheets -- were previously considered to be the graveyards of energetic particles. In this paper, we demonstrate the important role of plasmoids in shaping the particle energy spectrum in relativistic reconnection (i.e., with upstream magnetization $σ_{\rm up} \gg 1$). Using two dimensional particle-in-cell simulations in pair plasmas with $σ_{\rm up}=10$ and $100$, we study a secondary particle energization process that takes place inside compressing plasmoids. We demonstrate that plasmoids grow in time, while their interiors compress, amplifying the internal magnetic field. The magnetic field felt by particles injected in an isolated plasmoid increases linearly with time, which leads to particle energization as a result of magnetic moment conservation. For particles injected with a power-law distribution function, this energization process acts in such a way that the shape of the injected power law is conserved, while producing an additional non-thermal tail $f(E)\propto E^{-3}$ at higher energies followed by an exponential cutoff. The cutoff energy, which increases with time as $E_{\rm cut}\propto\sqrt{t}$, can greatly exceed $σ_{\rm up} m_e c^2$. We analytically predict the secondary acceleration timescale and the shape of the emerging particle energy spectrum, which can be of major importance in certain astrophysical systems, such as blazar jets.