Rossetti Andrea, Falk Matthias, Leitenstorfer Alfred, Brida Daniele, Ludwig Markus
Department of Physics and Materials Science, University of Luxembourg, Luxembourg, Luxembourg.
Department of Physics and Center for Applied Photonics, University of Konstanz, Konstanz, Germany.
Nanophotonics. 2024 Apr 15;13(15):2803-2809. doi: 10.1515/nanoph-2023-0897. eCollection 2024 Jul.
The investigation of optical phenomena in the strong-field regime requires few-cycle laser pulses at field strengths exceeding gigavolts per meter (GV/m). Surprisingly, such conditions can be reached by tightly focusing pJ-level pulses with nearly octave spanning optical bandwidth onto plasmonic nanostructures, exploiting the field-enhancement effect. In this situation, the Gouy phase of the focused beam can deviate significantly from the monochromatic scenario. Here, we study the effect of the Gouy phase of a pulse exploited to drive coherent strong-field photocurrents within a plasmonic gap nanoantenna. While the influence of the specific Gouy phase profile in the experiment approaches the monochromatic case closely, this scheme may be utilized to identify more intricate phase profiles at sub-diffraction scale. Our results pave the way for Gouy phase engineering at picojoule (pJ) pulse energy levels, enabling the optimization of strong-field optical phenomena.
在强场 regime 中对光学现象的研究需要场强超过每米吉伏(GV/m)的少周期激光脉冲。令人惊讶的是,通过将具有近倍频程光学带宽的皮焦耳级脉冲紧密聚焦到等离子体纳米结构上,利用场增强效应,可以达到这样的条件。在这种情况下,聚焦光束的古依相位会显著偏离单色情况。在这里,我们研究了用于驱动等离子体间隙纳米天线内相干强场光电流的脉冲的古依相位的影响。虽然实验中特定古依相位分布的影响非常接近单色情况,但该方案可用于识别亚衍射尺度下更复杂的相位分布。我们的结果为皮焦耳(pJ)脉冲能量水平下的古依相位工程铺平了道路,能够优化强场光学现象。