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Nonlinear optical susceptibility of atomically thin WX_2 crystals

机译:原子薄WX_2晶体的非线性光学磁化率

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摘要

We have studied tungsten diselenide (WSe2) and tungsten disulfide (WS2) monolayer materials in second harmonic generation spectroscopy and microscopy experiments. Ultra-broadband continuum pulses served as the fundamental beam while its second harmonic spectrum in the visible and ultraviolet (UV) range was detected and analyzed with a better than 0.3 nm spectral resolution ( 2 meV). We provide dispersion data and absolute values for chi((2)) for the materials within a photon energy range of 2.3-3.2 eV. Fine spectral features that were detected within the dispersion data for the optical nonlinearities indicate the impact of near bandgap exciton transitions. The fundamental bandgap of 2.35 eV and exciton binding energy of 0.38 eV were determined from the measurements for WS2 monolayers while the corresponding values in WSe2 monolayers were 2.22 eV and 0.71 eV. Ranges for the absolute values of the sheet nonlinearity for WS2 and WSe2 are shown to be 0.58-1.65 x 10(-18) m(2)/V and 0.21-0.92 x 10(-18) m(2)/V, correspondingly.
机译:我们已经在二次谐波产生光谱和显微镜实验中研究了二硒化钨(WSe2)和二硫化钨(WS2)单层材料。超宽带连续谱脉冲用作基本光束,同时以优于0.3 nm的光谱分辨率(<2 meV)检测和分析了其在可见光和紫外(UV)范围内的二次谐波光谱。我们提供了在2.3-3.2 eV的光子能量范围内材料的chi((2))色散数据和绝对值。在色散数据中检测到的用于光学非线性的精细光谱特征表明了近带隙激子跃迁的影响。通过对WS2单层的测量确定了2.35 eV的基带隙和0.38 eV的激子结合能,而WSe2单层的相应值分别为2.22 eV和0.71 eV。 WS2和WSe2的工作表非线性的绝对值范围分别为0.58-1.65 x 10(-18)m(2)/ V和0.21-0.92 x 10(-18)m(2)/ V 。

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