论文标题
评论“非理想领域解决相对论重新连接中的注射问题”
Comment on "Nonideal Fields Solve the Injection Problem in Relativistic Reconnection"
论文作者
论文摘要
最近,Sironi(PRL,128,145102; S22)报道了相对论磁重新连接的动力学模拟中,颗粒加速到高能及其与磁场大于磁场(E> B区域)的区域的相关性。他们声称,E> B区域中的电场(用于消失的导向场)在加速颗粒到注入能量方面占主导地位。 S22提出了测试粒子模拟,表明如果粒子能量重置为E> B区域的低能,则有效注射会被抑制。该评论通过分析类似于S22中参考案例的模拟来重新检查这些主张。我们表明,在交叉点期间,E> B加速度仅贡献很小的注入能量,因为E> B区域仅在短时间内寄主颗粒。任何E> B交叉点之前的能量具有可比的贡献,表明E> B区域在加速颗粒中并非唯一。新的测试粒子模拟表明,E> B区域中的零外电场不会强烈影响注射。我们建议S22中用于排除E> B加速度的程序部分消除了E> B区域之外的加速度,从而得出了错误的结论。
Recently, Sironi (PRL, 128, 145102; S22) reported the correlation between particles accelerated into high energy and their crossings of regions with electric field larger than magnetic field (E>B regions) in kinetic simulations of relativistic magnetic reconnection. They claim that electric fields in E>B regions (for a vanishing guide field) dominate in accelerating particles to the injection energy. S22 presented test-particle simulations showing that if particle energies are reset to low energies in E>B regions, efficient injection is suppressed. This Comment re-examines these claims by analyzing a simulation resembling the reference case in S22. We show that during crossings E>B acceleration only contributes a small fraction to the injection energy as E>B regions only host particles for a short duration. The energization before any E>B crossings has a comparable contribution, indicating E>B regions are not unique in pre-accelerating particles. A new test-particle simulation shows that zero-outing electric fields in E>B regions does not strongly influence the injection. We suggest that the procedure used in S22 to exclude E>B acceleration partly removes acceleration outside E>B regions, leading to a false conclusion.