论文标题
参数波形合成:一种可扩展的方法来生成子周期光瞬变
Parametric Waveform Synthesis: a scalable approach to generate sub-cycle optical transients
论文作者
论文摘要
具有可控场波形和极短的持续时间的电磁脉冲的可用性,即使在单个光学周期以下,对于完全利用强场上的过程以及在AttoSecond Time-Amain中发生的超快轻驱动机制的洞察力至关重要。最近证明的参数波形合成(PWS)引入了一种能量,功率和频谱量表方法,通过连贯结合通过光学参数放大器获得的不同相位稳定的脉冲来生成非肌体的亚周期光波形。已经解决了重大的技术发展,以克服与PW相关的稳定性问题并获得有效且可靠的波形控制系统。在这里,我们介绍了启用PWS技术的主要成分。有关光学,机械和电子设置的设计选择是通过分析/数值建模来合理的,并通过实验观察结果进行了标准。在目前的化身中,PWS技术可以生成可见的几秒钟脉冲,跨越可见的红外线范围。
The availability of electromagnetic pulses with controllable field waveform and extremely short duration, even below a single optical cycle, is imperative to fully harness strong-field processes and to gain insight into ultrafast light-driven mechanisms occurring in the attosecond time-domain. The recently demonstrated parametric waveform synthesis (PWS) introduces an energy-, power- and spectrum-scalable method to generate non-sinusoidal sub-cycle optical waveforms by coherently combining different phase-stable pulses attained via optical parametric amplifiers. Significant technological developments have been addressed to overcome the stability issues related to PWS and to obtain an effective and reliable waveform control system. Here we present the main ingredients enabling PWS technology. The design choices concerning the optical, mechanical and electronic setups are justified by analytical/numerical modeling and benchmarked by experimental observations. In its present incarnation, the PWS technology enables the generation of field-controllable mJ-level few-femtosecond pulses spanning the visible to infrared range.