Shilkin Daniil A, Ha Son Tung, Paniagua-Domínguez Ramón, Kuznetsov Arseniy I
Institute of Materials Research and Engineering (IMRE), Agency for Science, Technology and Research (A*STAR), 2 Fusionopolis Way, Innovis #08-03, Singapore 138634, Republic of Singapore.
Nano Lett. 2024 Nov 13;24(45):14229-14235. doi: 10.1021/acs.nanolett.4c03392. Epub 2024 Oct 31.
Time-varying optical metasurfaces have attracted significant research attention for their ability to dynamically modulate the spectral characteristics of light and achieve effects not possible in static systems. Nonlocal metasurfaces, with their spatially extended resonant modes, have the potential to further expand these capabilities by enabling spatially selective modulation. Here, we experimentally explore the application of spatially structured femtosecond laser pumping to modulate a leaky guided mode in a semiconductor metasurface. Using angle-resolved transient transmission spectroscopy, we study the dynamic response of the system across a range of wavelengths and angles of incidence, observing frequency and momentum conversion. When the pumping location is varied, this technique allows for reconstructing the temporal dynamics of the probe pulse propagating in the metasurface mode. Our results not only demonstrate a versatile toolkit for spatiotemporal light control but also provide fundamental insight into the excitation of spatially extended modes in nonlocal metasurfaces.
时变光学超表面因其能够动态调制光的光谱特性并实现静态系统中无法实现的效果而备受研究关注。非局域超表面具有空间扩展的共振模式,通过实现空间选择性调制,有可能进一步扩展这些能力。在此,我们通过实验探索空间结构化飞秒激光泵浦在调制半导体超表面中的泄漏导模方面的应用。利用角分辨瞬态透射光谱,我们研究了系统在一系列波长和入射角范围内的动态响应,观察到频率和动量转换。当泵浦位置改变时,该技术能够重构在超表面模式中传播的探测脉冲的时间动态。我们的结果不仅展示了用于时空光控制的通用工具包,还为非局域超表面中空间扩展模式的激发提供了基本见解。