Department of Electrical and Computer Engineering, Technion-Israel Institute of Technology, 32000 Haifa, Israel.
ICFO-Institut de Ciències Fotòniques, The Barcelona Institute of Science and Technology, Av. Carl Friedrich Gauss 3, 08860 Castelldefels (Barcelona), Spain.
Science. 2021 Jun 11;372(6547):1181-1186. doi: 10.1126/science.abg9015.
Coherent optical excitations in two-dimensional (2D) materials, 2D polaritons, can generate a plethora of optical phenomena that arise from the extraordinary dispersion relations that do not exist in regular materials. Probing of the dynamical phenomena of 2D polaritons requires simultaneous spatial and temporal imaging capabilities and could reveal unknown coherent optical phenomena in 2D materials. Here, we present a spatiotemporal measurement of 2D wave packet dynamics, from its formation to its decay, using an ultrafast transmission electron microscope driven by femtosecond midinfrared pulses. The ability to coherently excite phonon-polariton wave packets and probe their evolution in a nondestructive manner reveals intriguing dispersion-dependent dynamics that includes splitting of multibranch wave packets and, unexpectedly, wave packet deceleration and acceleration. Having access to the full spatiotemporal dynamics of 2D wave packets can be used to illuminate puzzles in topological polaritons and discover exotic nonlinear optical phenomena in 2D materials.
二维(2D)材料中的相干光学激发,即 2D 极化激元,可以产生大量源于非常规材料中不存在的特殊色散关系的光学现象。探测 2D 极化激元的动力学现象需要同时具备空间和时间成像能力,这可能揭示 2D 材料中未知的相干光学现象。在这里,我们使用飞秒中红外脉冲驱动的超快透射电子显微镜,对 2D 波包的形成到衰减的动力学进行了时空测量。我们能够以非破坏性的方式相干激发声子极化激元波包并探测其演化,揭示出引人入胜的色散相关动力学,包括多分支波包的分裂,以及出人意料的波包减速和加速。获得 2D 波包的完整时空动力学可以用于阐明拓扑极化激元中的难题,并发现 2D 材料中的奇异非线性光学现象。