论文标题
第二谐的年轻干扰原子 - 薄杂晶
Second-Harmonic Young Interference in Atom-Thin Heterocrystals
论文作者
论文摘要
光学第二谐波生成(SHG)是一个非线性参数过程,它使传入光的频率增加一倍。仅在非中心对称材料中,它已被广泛用于生物学和医学科学的激光调制,表面科学研究和无标签成像。二维晶体是理想的SHG材料,这不仅是因为它们的强光相互作用和原子厚度违背了相匹配要求,而且还因为它们在具有高角度精度和材料多样性的定制异质晶体中的叠加性。在这里,我们直接表明,过渡金属二分法源(TMDS)中的杂种中的SHG受两个相干SH场之间的光学干扰,使用光谱相干涉测定法具有材料依赖性相位延迟。我们还量化了MOS2和WS2之间的频率依赖性相位差,这也与偏振分辨的数据和对复杂易感性的第一原理计算一致。这项工作中显示的年轻双缝干扰的第二谐波类似物表明,通过原子厚的非线性光学材料进行定制设计的参数生成的潜力。
Optical second-harmonic generation (SHG) is a nonlinear parametric process that doubles the frequency of incoming light. Only allowed in non-centrosymmetric materials, it has been widely used in frequency modulation of lasers, surface scientific investigation, and label-free imaging in biological and medical sciences. Two-dimensional crystals are ideal SHG-materials not only for their strong light-matter interaction and atomic thickness defying the phase-matching requirement but also for their stackability into customized hetero-crystals with high angular precision and material diversity. Here we directly show that SHG in hetero-bilayers of transition metal dichalcogenides (TMDs) is governed by optical interference between two coherent SH fields with material-dependent phase delays using spectral phase interferometry. We also quantify the frequency-dependent phase difference between MoS2 and WS2, which also agrees with polarization-resolved data and first-principles calculations on complex susceptibility. The second-harmonic analogue of Young double-slit interference shown in this work demonstrates the potential of custom-designed parametric generation by atom-thick nonlinear optical materials.