首页> 外文期刊>Philosophical transactions of the Royal Society. Mathematical, physical, and engineering sciences >Inverse free electron lasers and laser wakefield acceleration driven by CO2 lasers
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Inverse free electron lasers and laser wakefield acceleration driven by CO2 lasers

机译:反向自由电子激光器和由CO2激光器驱动的激光尾场加速

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摘要

The staged electron laser acceleration (STELLA) experiment demonstrated staging between two laser-driven devices, high trapping efficiency of microbunches within the accelerating field and narrow energy spread during laser acceleration. These are important for practical laser-driven accelerators. STELLA used inverse free electron lasers, which were chosen primarily for convenience. Nevertheless, the STELLA approach can be applied to other laser acceleration methods, in particular, laser-driven plasma accelerators. STELLA is now conducting experiments on laser wakefield acceleration (LWFA). Two novel LWFA approaches are being investigated. In the first one, called pseudo-resonant LWFA, a laser pulse enters a low-density plasma where nonlinear laser/plasma interactions cause the laser pulse shape to steepen, thereby creating strong wakefields. A witness e-beam pulse probes the wakefields. The second one, called seeded self-modulated LWFA, involves sending a seed e-beam pulse into the plasma to initiate wakefield formation. These wakefields are amplified by a laser pulse following shortly after the seed pulse. A second e-beam pulse (witness) follows the seed pulse to probe the wakefields. These LWFA experiments will also be the first ones driven by a CO2 laser beam.
机译:分阶段的电子激光加速(STELLA)实验证明了两个激光驱动设备之间的过渡,加速场内微束的高捕获效率以及在激光加速过程中能量散布窄。这些对于实用的激光驱动加速器很重要。 STELLA使用反向自由电子激光器,主要是为了方便而选择。然而,STELLA方法可以应用于其他激光加速方法,特别是激光驱动的等离子体加速器。 STELLA现在正在进行激光尾波加速(LWFA)实验。正在研究两种新颖的LWFA方法。在第一个称为伪谐振LWFA中,激光脉冲进入低密度等离子体,在该区域中非线性激光/等离子体相互作用使激光脉冲形状变陡,从而产生强大的唤醒场。目击者电子束脉冲探测尾波场。第二个称为种子自调制LWFA,涉及将种子电子束脉冲发送到等离子体中以启动尾波场形成。在晶种脉冲之后不久,这些激光束会被激光脉冲放大。第二个电子束脉冲(见证)跟随种子脉冲以探测尾波场。这些LWFA实验也将是第一个由CO2激光束驱动的实验。

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