拉伤
无穷小应变理论
材料科学
应变工程
张量(固有定义)
二次谐波产生
非线性光学
光致发光
衍射
光学
光电子学
领域(数学)
弯曲
非线性光学
钼
图像分辨率
光学显微镜
非线性系统
分辨率(逻辑)
砷化镓
应力-应变曲线
作者
Lukas Mennel,Marco M. Furchi,Stefan Wachter,Matthias Paur,Dmitry K. Polyushkin,Thomas Mueller
标识
DOI:10.1038/s41467-018-02830-y
摘要
Strain engineering is widely used in material science to tune the (opto-)electronic properties of materials and enhance the performance of devices. Two-dimensional atomic crystals are a versatile playground to study the influence of strain, as they can sustain very large deformations without breaking. Various optical techniques have been employed to probe strain in two-dimensional materials, including micro-Raman and photoluminescence spectroscopy. Here we demonstrate that optical second harmonic generation constitutes an even more powerful technique, as it allows extraction of the full strain tensor with a spatial resolution below the optical diffraction limit. Our method is based on the strain-induced modification of the nonlinear susceptibility tensor due to a photoelastic effect. Using a two-point bending technique, we determine the photoelastic tensor elements of molybdenum disulfide. Once identified, these parameters allow us to spatially image the two-dimensional strain field in an inhomogeneously strained sample.
科研通智能强力驱动
Strongly Powered by AbleSci AI