Song Hanbing, Lang Peng, Ji Boyu, Xu Yang, Peng Siyuan, Song Xiaowei, Lin Jingquan
School of Physics, Changchun University of Science and Technology, Changchun 130022, China.
Zhongshan Institute of Changchun University of Science and Technology, Zhongshan 528400, China.
J Phys Chem Lett. 2024 Aug 8;15(31):7924-7930. doi: 10.1021/acs.jpclett.4c01320. Epub 2024 Jul 29.
With the increasing demand for ultrafast communication and information processing in future optical chips, arbitrary manipulation of electromagnetic fields in the femtosecond-nanometer spatiotemporal scale has attracted great attention in integrated optics. Manipulation of the nanoscale light field in the real femtosecond temporal domain is challenging work. Here, we have demonstrated all-optical control of ultrafast switching between the hybridized plasmonic fields of a Au nanorod dimer in the fs-nm scale using a dispersed femtosecond laser and revealed the transformation process with ultrahigh spatiotemporal resolved technology via the combination of a pump-probe technique and photoemission electron microscopy (PEEM). The results show that we can actively and coherently control the transformation sequence and time (with the shortest temporal interval of around 15 fs) of the two hybridized modes in the Au nanorod dimer by tuning the dispersion of the laser pulse. The nanoscale light manipulation achieved by all-optical control may contribute to the design of high-speed miniaturized signal-processing systems.
随着未来光学芯片对超高速通信和信息处理的需求不断增加,在飞秒-纳米时空尺度上对电磁场进行任意操纵在集成光学领域引起了极大关注。在实际的飞秒时域中操纵纳米级光场是一项具有挑战性的工作。在此,我们利用色散飞秒激光展示了在飞秒-纳米尺度上对金纳米棒二聚体的杂化等离子体场之间的超快切换进行全光控制,并通过泵浦-探测技术与光发射电子显微镜(PEEM)相结合的超高时空分辨技术揭示了其转换过程。结果表明,我们可以通过调整激光脉冲的色散,主动且相干地控制金纳米棒二聚体中两种杂化模式的转换顺序和时间(最短时间间隔约为15飞秒)。通过全光控制实现的纳米级光操纵可能有助于高速小型化信号处理系统的设计。