论文标题

直接测量实验室等离子体中磁驱动的重新连接的非热电子加速度

Direct measurement of non-thermal electron acceleration from magnetically driven reconnection in a laboratory plasma

论文作者

Chien, Abraham, Gao, Lan, Zhang, Shu, Ji, Hantao, Blackman, Eric G., Daughton, William, Stanier, Adam, Le, Ari, Guo, Fan, Follett, Russ, Chen, Hui, Fiksel, Gennady, Bleotu, Gabriel, Cauble, Robert C., Chen, Sophia N., Fazzini, Alice, Flippo, Kirk, French, Omar, Froula, Dustin H., Fuchs, Julien, Fujioka, Shinsuke, Hill, Kenneth, Klein, Sallee, Kuranz, Carolyn, Nilson, Philip, Rasmus, Alexander, Takizawa, Ryunosuke

论文摘要

磁重新连接是一种无处不在的天体物理过程,它将磁能迅速转化为血浆流能,热能和包括高能电子在内的非热能颗粒的某种组合。在理论上已经提出了不同的低$β$(等离子体与磁性压力比)和无碰撞环境的各种重新连接加速机制,并在数值上进行了研究,包括一阶和二阶的费米加速度,betatron加速度,BETATRON加速,平行电场,沿磁场沿磁场和直接加速电场,并通过重新连接电场进行直接加速。然而,迄今为止,由于\ textit {intutu}测量值的短debye长度,\ textit {ex-situ}测量值的简短debye长度,因此很难直接观察到实验实验中非热粒子加速度的直接观察。在这里,我们报告了使用激光驱动的电容器线圈平台在实验中直接测量从低$β$磁性重新连接的加速非热电子。我们使用Kilojoule激光器驱动平行电流,以重新连接准轴对称几何形状中的Megagauss级磁场。由粒子中的粒子模拟支持的测得的电子能谱和所得加速能的角度依赖性表明,平面外重新连接电场的直接电场加速度的机理正在起作用。使用这种机制的缩放能量显示与天体物理观测直接相关。因此,我们的结果通过重新连接来验证提出的加速机制之一,并建立了一种新的方法来研究重新连接粒子加速器,并在相关方案中实验室实验。

Magnetic reconnection is a ubiquitous astrophysical process that rapidly converts magnetic energy into some combination of plasma flow energy, thermal energy, and non-thermal energetic particles, including energetic electrons. Various reconnection acceleration mechanisms in different low-$β$ (plasma-to-magnetic pressure ratio) and collisionless environments have been proposed theoretically and studied numerically, including first- and second-order Fermi acceleration, betatron acceleration, parallel electric field acceleration along magnetic fields, and direct acceleration by the reconnection electric field. However, none of them have been heretofore confirmed experimentally, as the direct observation of non-thermal particle acceleration in laboratory experiments has been difficult due to short Debye lengths for \textit{in-situ} measurements and short mean free paths for \textit{ex-situ} measurements. Here we report the direct measurement of accelerated non-thermal electrons from low-$β$ magnetically driven reconnection in experiments using a laser-powered capacitor coil platform. We use kiloJoule lasers to drive parallel currents to reconnect MegaGauss-level magnetic fields in a quasi-axisymmetric geometry. The angular dependence of the measured electron energy spectrum and the resulting accelerated energies, supported by particle-in-cell simulations, indicate that the mechanism of direct electric field acceleration by the out-of-plane reconnection electric field is at work. Scaled energies using this mechanism show direct relevance to astrophysical observations. Our results therefore validate one of the proposed acceleration mechanisms by reconnection, and establish a new approach to study reconnection particle acceleration with laboratory experiments in relevant regimes.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源