二次谐波产生
杰纳斯
各向异性
材料科学
共振(粒子物理)
异质结
凝聚态物理
光子学
对称性破坏
二次谐波成像显微术
光电子学
波长
非线性光学
光学
物理
原子物理学
纳米技术
激光器
量子力学
作者
Kunyan Zhang,Medha Dandu,Nguyen Tuan Hung,Tianyi Zhang,Elyse Barré,Riichiro Saito,Jing Kong,Archana Raja,Shengxi Huang
出处
期刊:ACS Nano
[American Chemical Society]
日期:2025-10-30
标识
DOI:10.1021/acsnano.5c10861
摘要
Symmetry breaking in van der Waals materials enables the realization of quantum states and advanced device functionalities. Janus transition-metal dichalcogenides (TMDs) exhibit distinctive nonlinear optical properties due to their broken out-of-plane mirror symmetry. However, the dynamic control of second harmonic generation (SHG) anisotropy and resonance behavior via optical excitation remains elusive. In this work, we investigate the SHG response of Janus MoSSe/MoS2 heterostructures with 2H and 3R stackings. We can tune the SHG response by varying the incident photon wavelength from 800 to 1000 nm, which shows a resonance-dependent enhancement in intensity and a deviation from 6-fold symmetry, indicating wavelength-dependent anisotropy. The ratio between maximum and minimum intensity in the armchair directions, associated with the SHG anisotropy, reaches a value of 1.73 at the excitation wavelength of 1000 nm. Group theory analysis and first-principles calculations reveal that the observed anisotropy arises from optically induced strain. Our findings highlight the role of symmetry breaking and optical resonance contributing to the optomechanical tuning of SHG anisotropy, offering opportunities for developing Janus TMD-based photonic devices for frequency conversion, light generation, and optical switching.
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