Edwards Matthew R, Platonenko Victor T, Mikhailova Julia M
Opt Lett. 2014 Dec 15;39(24):6823-6. doi: 10.1364/OL.39.006823.
We study the generation of attosecond x-ray and ultraviolet pulses from relativistically driven overdense plasma targets with two-color incident light. Particle-in-cell simulations show that significant improvement in pulse intensity and isolation is achievable with appropriate laser and plasma parameters. Conversion of 5% of incident laser energy to its second harmonic can enhance the intensity of generated attosecond pulses by an order of magnitude. This approach allows the generation of higher attosecond pulse intensities with existing experimental laser technology and offers a powerful tool for the analysis of the dynamics of relativistic laser-plasma interaction.
我们研究了利用双色入射光从相对论驱动的过密等离子体靶中产生阿秒X射线和紫外脉冲。粒子模拟表明,通过适当的激光和等离子体参数,可以显著提高脉冲强度和隔离度。将5%的入射激光能量转换为其二次谐波,可以使产生的阿秒脉冲强度提高一个数量级。这种方法能够利用现有的实验激光技术产生更高强度的阿秒脉冲,并为分析相对论激光-等离子体相互作用的动力学提供了一个强大的工具。