Kassab Hadil, Gröbmeyer Sebastian, Schweinberger Wolfgang, Hofer Christina, Steinleitner Philipp, Högner Maximilian, Amotchkina Tatiana, Gerz Daniel, Knorr Matthias, Huber Rupert, Karpowicz Nicholas, Pupeza Ioachim
Opt Express. 2023 Jul 17;31(15):24862-24874. doi: 10.1364/OE.493887.
Parametric downconversion driven by modern, high-power sources of 10-fs-scale near-infrared pulses, in particular intrapulse difference-frequency generation (IPDFG), affords combinations of properties desirable for molecular vibrational spectroscopy in the mid-infrared range: broad spectral coverage, high brilliance, and spatial and temporal coherence. Yet, unifying these in a robust and compact radiation source has remained a key challenge. Here, we address this need by employing IPDFG in a multi-crystal in-line geometry, driven by the 100-W-level, 10.6-fs pulses of a 10.6-MHz-repetition-rate, nonlinearly post-compressed Yb:YAG thin-disk oscillator. Polarization tailoring of the driving pulses using a bichromatic waveplate is followed by a sequence of two crystals, LiIO and LiGaS, resulting in the simultaneous coverage of the 800-cm-to-3000-cm spectral range (at -30-dB intensity) with 130 mW of average power. We demonstrate that optical-phase coherence is maintained in this in-line geometry, in theory and experiment, the latter employing ultra-broadband electro-optic sampling. These results pave the way toward coherent spectroscopy schemes like field-resolved and frequency-comb spectroscopy, as well as nonlinear, ultrafast spectroscopy and optical-waveform synthesis across the entire infrared molecular fingerprint region.
由现代高功率的10飞秒级近红外脉冲源驱动的参量下转换,特别是脉冲内差频产生(IPDFG),提供了中红外范围内分子振动光谱所需的特性组合:宽光谱覆盖范围、高亮度以及空间和时间相干性。然而,将这些特性统一在一个坚固紧凑的辐射源中仍然是一个关键挑战。在这里,我们通过在多晶体串联几何结构中采用IPDFG来满足这一需求,该结构由重复频率为10.6 MHz、经过非线性后压缩的100 W级、10.6飞秒的Yb:YAG薄片振荡器脉冲驱动。使用双色波片对驱动脉冲进行偏振调控,随后是两块晶体LiIO和LiGaS,从而以130 mW的平均功率同时覆盖800 cm⁻¹至3000 cm⁻¹的光谱范围(在-30 dB强度下)。我们在理论和实验上都证明了在这种串联几何结构中能够保持光学相位相干性,实验采用了超宽带电光采样。这些结果为诸如场分辨光谱和频率梳光谱等相干光谱方案,以及整个红外分子指纹区域的非线性超快光谱和光波波形合成铺平了道路。