Liang Houkun, Krogen Peter, Wang Zhou, Park Hyunwook, Kroh Tobias, Zawilski Kevin, Schunemann Peter, Moses Jeffrey, DiMauro Louis F, Kärtner Franz X, Hong Kyung-Han
Department of Electrical Engineering and Computer Science and Research Laboratory of Electronics, Massachusetts Institute of Technology (MIT), Cambridge, Massachusetts, 02139, USA.
Singapore Institute of Manufacturing Technology, 2 Fusionopolis Way, Singapore, 138634, Singapore.
Nat Commun. 2017 Jul 26;8(1):141. doi: 10.1038/s41467-017-00193-4.
High-energy phase-stable sub-cycle mid-infrared pulses can provide unique opportunities to explore phase-sensitive strong-field light-matter interactions in atoms, molecules and solids. At the mid-infrared wavelength, the Keldysh parameter could be much smaller than unity even at relatively modest laser intensities, enabling the study of the strong-field sub-cycle electron dynamics in solids without damage. Here we report a high-energy sub-cycle pulse synthesiser based on a mid-infrared optical parametric amplifier and its application to high-harmonic generation in solids. The signal and idler combined spectrum spans from 2.5 to 9.0 µm. We coherently synthesise the passively carrier-envelope phase-stable signal and idler pulses to generate 33 μJ, 0.88-cycle, multi-gigawatt pulses centred at ~4.2 μm, which is further energy scalable. The mid-infrared sub-cycle pulse is used for driving high-harmonic generation in thin silicon samples, producing harmonics up to ~19th order with a continuous spectral coverage due to the isolated emission by the sub-cycle driver.Stable sub-cycle pulses in the mid-infrared region allow damage-free investigation of electron dynamics in solids. Here, the authors develop a suitable source to this end which is based on an optical parametric amplifier.
高能量相位稳定的亚周期中红外脉冲能够提供独特的机会,用以探索原子、分子和固体中的相位敏感强场光与物质的相互作用。在中红外波长下,即使在相对适中的激光强度下,凯尔迪什参数也可能远小于1,从而能够在不造成损伤的情况下研究固体中的强场亚周期电子动力学。在此,我们报告了一种基于中红外光学参量放大器的高能量亚周期脉冲合成器及其在固体高次谐波产生中的应用。信号光和闲频光的合成光谱范围为2.5至9.0微米。我们相干地合成了被动载波包络相位稳定的信号光和闲频光脉冲,以产生33微焦、0.88周期、中心波长约为4.2微米的多吉瓦脉冲,且该脉冲能量可进一步扩展。中红外亚周期脉冲用于驱动薄硅样品中的高次谐波产生,由于亚周期驱动源的孤立发射,可产生高达约19阶的谐波,并具有连续的光谱覆盖。中红外区域稳定的亚周期脉冲使得对固体中电子动力学进行无损研究成为可能。在此,作者为此开发了一种基于光学参量放大器的合适光源。