Hernandez-Rueda Javier, Noordam Marc L, Komen Irina, Kuipers L
Department of Quantum Nanoscience, Kavli Institute of Nanoscience Delft, Delft University of Technology, Lorentzweg 1, 2628 CJ Delft, The Netherlands.
ACS Photonics. 2021 Feb 17;8(2):550-556. doi: 10.1021/acsphotonics.0c01567. Epub 2021 Jan 11.
Currently, the nonlinear optical properties of 2D materials are attracting the attention of an ever-increasing number of research groups due to their large potential for applications in a broad range of scientific disciplines. Here, we investigate the interplay between nonlinear photoluminescence (PL) and several degenerate and nondegenerate nonlinear optical processes of a WS monolayer at room temperature. We illuminate the sample using two femtosecond laser pulses at frequencies ω and ω with photon energies below the optical bandgap. As a result, the sample emits light that shows characteristic spectral peaks of the second-harmonic generation, sum-frequency generation, and four-wave mixing. In addition, we find that both resonant and off-resonant nonlinear excitation via frequency mixing contributes to the (nonlinear) PL emission at the A-exciton frequency. The PL exhibits a clear correlation with the observed nonlinear effects, which we attribute to the generation of excitons via degenerate and nondegenerate multiphoton absorption. Our work illustrates a further step toward understanding the fundamental relation between parametric and nonparametric nondegenerate optical mechanisms in transition-metal dichalcogenides. In turn, such understanding has great potential to expand the range of applicability of nonlinear optical processes of 2D materials in different fields of science and technology, where nonlinear mechanisms are typically limited to degenerate processes.
目前,二维材料的非线性光学特性因其在广泛科学领域的巨大应用潜力而吸引了越来越多研究团队的关注。在此,我们研究了室温下WS单层的非线性光致发光(PL)与几种简并和非简并非线性光学过程之间的相互作用。我们使用两个频率为ω和ω的飞秒激光脉冲照射样品,其光子能量低于光学带隙。结果,样品发射出的光显示出二次谐波产生、和频产生以及四波混频的特征光谱峰。此外,我们发现通过频率混合的共振和非共振非线性激发都对A激子频率处的(非线性)PL发射有贡献。PL与观察到的非线性效应呈现出明显的相关性,我们将其归因于通过简并和非简并多光子吸收产生激子。我们的工作朝着理解过渡金属二卤化物中参量和非参量非简并光学机制之间的基本关系又迈进了一步。反过来,这种理解对于扩大二维材料非线性光学过程在不同科学技术领域的适用范围具有巨大潜力,在这些领域中非线性机制通常仅限于简并过程。