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CO激光泵浦的多毫焦耳级超快脉冲太赫兹源的可能性。

Possibility of CO laser-pumped multi-millijoule-level ultrafast pulse terahertz sources.

作者信息

Tóth György, Illés Gergő, Nazymbekov Gabit, Mbithi Nelson, Almási Gábor, Hebling János

机构信息

Institute of Physics, University of Pécs, Pecs, 7624, Hungary.

Szentágothai Research Centre, University of Pécs, 7624, Pecs, Hungary.

出版信息

Sci Rep. 2024 Jan 10;14(1):999. doi: 10.1038/s41598-023-51139-4.

Abstract

In the last decade, intense research has been witnessed on developing compact, terahertz (THz) driven electron accelerators, producing electrons with a sub-MeV-few tens of MeV energy. Such economical devices could be used in scientific and material research and medical treatments. However, until now, the extremely high-energy THz pulses needed by the THz counterparts of the microwave accelerators were generated by optical rectification (OR) of ultrafast Ti:sapphire or Yb laser pulses. These lasers, however, are not very effective. Because of this, we use numerical simulations to investigate the possibility of generating high-energy THz pulses by the OR of pulses produced by CO lasers, which can have high plug-in efficiency. The results obtained supposing optical rectification (OR) in GaAs demonstrate that consideration of the self-phase-modulation (SPM) and the second-harmonic-generation (SHG) processes is indispensable in the design of CO laser-based THz sources. More interestingly, although these two processes hinder achieving high laser-to-THz conversion efficiency, they can still surpass the 1.5% value, ensuring high system efficiency and making the CO laser OR system a promising THz source. Our finding also has important implications for other middle-infrared laser-pumped OR-based THz sources.

摘要

在过去十年中,人们目睹了对开发紧凑的太赫兹(THz)驱动电子加速器的深入研究,这些加速器能产生能量在亚兆电子伏特至几十兆电子伏特之间的电子。这种经济实惠的设备可用于科学研究、材料研究和医学治疗。然而,到目前为止,微波加速器的太赫兹对应物所需的极高能量太赫兹脉冲是通过超快钛宝石或镱激光脉冲的光整流(OR)产生的。然而,这些激光器效率不高。因此,我们使用数值模拟来研究通过CO激光器产生的脉冲进行光整流来产生高能量太赫兹脉冲的可能性,CO激光器具有较高的插入效率。假设在砷化镓中进行光整流所获得的结果表明,在基于CO激光器的太赫兹源设计中,考虑自相位调制(SPM)和二次谐波产生(SHG)过程是必不可少的。更有趣的是,尽管这两个过程阻碍了实现高的激光到太赫兹的转换效率,但它们仍能超过1.5%的值,确保了高系统效率,并使基于CO激光器的光整流系统成为一种有前景的太赫兹源。我们的发现对其他基于中红外激光泵浦光整流的太赫兹源也具有重要意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2f03/10781974/08a255b84a89/41598_2023_51139_Fig1_HTML.jpg

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