Tóth György, Polónyi Gyula, Hebling János
University of Pécs, Pécs, 7624, Hungary.
Szentágothai Research Centre, Pécs, 7624, Hungary.
Light Sci Appl. 2023 Oct 24;12(1):256. doi: 10.1038/s41377-023-01293-1.
Optical rectification of femtosecond laser pulses has emerged as the dominant technique for generating single- and few-cycle terahertz (THz) pulses. The advent of the tilted pulse front pumping (TPFP) velocity matching technique, proposed and implemented two decades ago, has ushered in significant advancements of these THz sources, which are pivotal in the realm of THz pump-probe and material control experiments, which need THz pulses with microjoule energies and several hundred kV/cm electric field strengths. Furthermore, these THz sources are poised to play a crucial role in the realization of THz-driven particle accelerators, necessitating millijoule-level pulses with tens of MV/cm electric field strengths. TPFP has enabled the efficient velocity matching in lithium niobate crystals renowned for their extraordinary high nonlinear coefficient. Moreover, its adaptation to semiconductor THz sources has resulted in a two-hundred-times enhancement in conversion efficiency. In this comprehensive review, we present the seminal achievements of the past two decades. We expound on the conventional TPFP setup, delineate its scaling limits, and elucidate the novel generation TPFP configurations proposed to surmount these constraints, accompanied by their preliminary outcomes. Additionally, we provide an in-depth analysis of the THz absorption, refractive index, and nonlinear coefficient spectra of lithium niobate and widely used semiconductors employed as THz generators, which dictate their suitability as THz sources. We underscore the far-reaching advantages of tilted pulse front pumping, not only for LN and semiconductor-based THz sources but also for selected organic crystal-based sources and Yb-laser-pumped GaP sources, previously regarded as velocity-matched in the literature.
飞秒激光脉冲的光学整流已成为产生单周期和少周期太赫兹(THz)脉冲的主导技术。二十年前提出并实施的倾斜脉冲前沿泵浦(TPFP)速度匹配技术的出现,推动了这些太赫兹源的重大进展,这些太赫兹源在太赫兹泵浦探测和材料控制实验领域至关重要,这些实验需要微焦耳能量和几百千伏/厘米电场强度的太赫兹脉冲。此外,这些太赫兹源有望在太赫兹驱动的粒子加速器的实现中发挥关键作用,这需要具有数十兆伏/厘米电场强度的毫焦耳级脉冲。TPFP已在以其极高非线性系数而闻名的铌酸锂晶体中实现了高效的速度匹配。此外,它对半导体太赫兹源的适应性使转换效率提高了两百倍。在这篇全面的综述中,我们展示了过去二十年的开创性成就。我们阐述了传统的TPFP设置,描述了其缩放限制,并阐明了为克服这些限制而提出的新型产生TPFP配置及其初步结果。此外,我们对铌酸锂以及用作太赫兹发生器的广泛使用的半导体的太赫兹吸收、折射率和非线性系数光谱进行了深入分析,这些决定了它们作为太赫兹源的适用性。我们强调了倾斜脉冲前沿泵浦的深远优势,不仅适用于基于LN和半导体的太赫兹源,也适用于选定的基于有机晶体的源和Yb激光泵浦的GaP源,这些源在文献中以前被认为是速度匹配的。