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Optical Parametric Amplification Techniques for the Generation of High-Energy Few-Optical-Cycles IR Pulses for Strong Field Applications

机译:用于强场应用的高能少光循环红外脉冲产生的光学参量放大技术

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Over the last few decades, the investigation of ultrafast phenomena occurring in atoms, molecules and solid-state systems under a strong-field regime of light-matter interaction has attracted great attention. The increasing request for a suitable optical technology is significantly boosting the development of powerful ultrafast laser sources. In this framework, Optical Parametric Amplification (OPA) is currently becoming a leading solution for applications in high-power ultra-broadband light burst generation. The main advantage provided by the OPA scheme consists of the possibility of exploring spectral ranges that are inaccessible by other laser technologies, as the InfraRed (IR) window. In this paper, we will give an overview on recent progress in the development of high-power few-optical-cycle parametric amplifiers in the near-IR and in the mid-IR spectral domain. In particular, the design of the most advanced OPA implementations is provided, containing a discussion on the key technical aspects. In addition, a review on their application to the study of strong-field ultrafast physical processes is reported.
机译:在过去的几十年中,研究在光,物质相互作用的强场下在原子,分子和固态系统中发生的超快现象引起了极大的关注。对合适的光学技术的日益增长的需求极大地促进了强大的超快激光源的发展。在这种框架下,光参量放大(OPA)当前正成为大功率超宽带光突发产生应用中的领先解决方案。 OPA方案提供的主要优势包括探索其他激光技术无法访问的光谱范围的可能性,例如红外(IR)窗口。在本文中,我们将概述在近红外和中红外光谱域中开发高功率少光周期参数放大器的最新进展。特别是,提供了最先进的OPA实施方案的设计,其中包含有关关键技术方面的讨论。此外,还报道了其在强场超快物理过程研究中的应用综述。

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