论文标题
级联的生成低于10的半循环脉冲
Cascaded Generation of a Sub-10-Attosecond Half-Cycle Pulse
论文作者
论文摘要
带有半周期电场的脉冲低于10的脉冲提供了特殊的选择,以检测和操纵原子时间尺度的电子。但是,这种脉冲的可用性仍然具有挑战性。在这里,我们提出了一种基于血浆中自然发生的级联反射过程,生成孤立的二十个近十分秒脉冲脉冲。首先通过用单周的飞秒脉冲拍摄中等密集的血浆来产生100s秒的脉冲。之后,产生的attosent脉冲通过单极扰动纳米含量的相对论电子板自然形成在等离子体中的单极扰动,从而在传输方向上产生了近10个近心循环脉冲。二维粒子中的粒子模拟表明,可以产生一个孤立的半循环脉冲,持续时间为8.3 toseconds。除了单周期驾驶脉冲外,这种方案还可以通过提前用相对论等离子体镜头塑造脉冲,通过商用100-TW 25-FS驾驶激光器实现。
Sub-10-attosecond pulses with half-cycle electric fields provide exceptional options to detect and manipulate electrons in the atomic timescale. However, the availability of such pulses is still challenging. Here, we propose a method to generate isolated sub-10-attosecond half-cycle pulses based on a cascade process naturally happening in plasma. A 100s-attosecond pulse is first generated by shooting a moderate overdense plasma with a one-cycle femtosecond pulse. After that, the generated attosecond pulse cascadedly produce a sub-10-attosecond half-cycle pulse in the transmission direction by unipolarly perturbing a nanometer-thin relativistic electron sheet naturally form in the plasma. Two-dimensional particle-in-cell simulations indicate that an isolated half-cycle pulse with the duration of 8.3 attoseconds can be produced. Apart from one-cycle driving pulse, such a scheme also can be realized with a commercial 100-TW 25-fs driving laser by shaping the pulse with a relativistic plasma lens in advance.