Emergence of electron coherence and two-color all-optical switching in MoS2 based on spatial self-phase modulation

Author:

Wu Yanling,Wu Qiong,Sun Fei,Cheng Cai,Meng Sheng,Zhao Jimin

Abstract

Generating electron coherence in quantum materials is essential in optimal control of many-body interactions and correlations. In a multidomain system this signifies nonlocal coherence and emergence of collective phenomena, particularly in layered 2D quantum materials possessing novel electronic structures and high carrier mobilities. Here we report nonlocal ac electron coherence induced in dispersed MoS2 flake domains, using coherent spatial self-phase modulation (SSPM). The gap-dependent nonlinear dielectric susceptibility χ(3) measured is surprisingly large, where direct interband transition and two-photon SSPM are responsible for excitations above and below the bandgap, respectively. A wind-chime model is proposed to account for the emergence of the ac electron coherence. Furthermore, all-optical switching is achieved based on SSPM, especially with two-color intraband coherence, demonstrating that electron coherence generation is a ubiquitous property of layered quantum materials.

Funder

National Basic Research Program of China

National Natural Science Foundation of China

External Cooperation Program of Chinese Academy of Sciences

Publisher

Proceedings of the National Academy of Sciences

Subject

Multidisciplinary

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