论文标题

在原子分层的半导体中朝紧凑的相匹配和波导非线性光学元件

Towards compact phase-matched and waveguided nonlinear optics in atomically layered semiconductors

论文作者

Xu, Xinyi, Trovatello, Chiara, Mooshammer, Fabian, Shao, Yinming, Zhang, Shuai, Yao, Kaiyuan, Basov, Dmitri N., Cerullo, Giulio, Schuck, P. James

论文摘要

非线性频率转换为光发作,光子纠缠和操纵提供了必不可少的工具。过渡金属二分法(TMDS)具有巨大的非线性敏感性和3R堆叠的TMD晶体,进一步结合了破碎的反转对称性和对齐的分层,代表理想的候选者,可以提高非线性光学增益和最小的足迹。在这里,我们报告了3R-MOS2的有效频率转换,从而揭示了其沿普通(平面内)和非凡(平面外)方向的二阶非线性过程的异常演变。通过测量第二个谐波产生(SHG)的3R -MOS2,其厚度不同 - 从单层(〜0.65 nm)到散装(〜1μm) - 我们介绍了对1520 nm的平面内SHG相干长度(〜530 nm)的首次测量,并在1520 nm处并实现了从VAN der Waals的纪录的非线性光学增强型,而不是VAN WAELS材料。发现3R-MOS2平板在尼贝特锂的转化效率相似,但在电信波长时近> 100倍以> 100倍。此外,沿着非凡的轴线,我们在波导几何形状中从3R-MOS2实现了可调的SHG,这首次揭示了这种结构中的相干长度。我们表征了完整的折射率光谱,并量化了各向异性3R-MOS2晶体中具有近场纳米成像的两个双发性分量。通过这些数据授权,我们评估了在波导几何形状中可达到的3R-MOS2中转换效率和非线性光学过程的内在限制。我们的分析强调了3R堆叠TMD对集成光子学的潜力,为设计高效的芯片上非线性光学设备提供了关键参数,包括定期旋转的结构,谐振器,紧凑的光学参数振荡器和放大器和放大器,以及光学量子电路。

Nonlinear frequency conversion provides essential tools for light generation, photon entanglement, and manipulation. Transition metal dichalcogenides (TMDs) possess huge nonlinear susceptibilities and 3R-stacked TMD crystals further combine broken inversion symmetry and aligned layering, representing ideal candidates to boost the nonlinear optical gain with minimal footprint. Here, we report on the efficient frequency conversion of 3R-MoS2, revealing the evolution of its exceptional second-order nonlinear processes along the ordinary (in-plane) and extraordinary (out-of-plane) directions. By measuring second harmonic generation (SHG) of 3R-MoS2 with various thickness - from monolayer (~0.65 nm) to bulk (~1 μm) - we present the first measurement of the in-plane SHG coherence length (~530 nm) at 1520 nm and achieve record nonlinear optical enhancement from a van der Waals material, >10^4 stronger than a monolayer. It is found that 3R-MoS2 slabs exhibit similar conversion efficiencies of lithium niobate, but within propagation lengths >100-fold shorter at telecom wavelengths. Furthermore, along the extraordinary axis, we achieve broadly tunable SHG from 3R-MoS2 in a waveguide geometry, revealing the coherence length in such structure for the first time. We characterize the full refractive index spectrum and quantify both birefringence components in anisotropic 3R-MoS2 crystals with near-field nano-imaging. Empowered with these data we assess the intrinsic limits of the conversion efficiency and nonlinear optical processes in 3R-MoS2 attainable in waveguide geometries. Our analysis highlights the potential of 3R-stacked TMDs for integrated photonics, providing critical parameters for designing highly efficient on-chip nonlinear optical devices including periodically poled structures, resonators, compact optical parametric oscillators and amplifiers, and optical quantum circuits.

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