State Key Laboratory of Information Photonics and Optical Communications (Beijing University of Posts and Telecommunications), P.O. Box 72 (BUPT), 100876, Beijing, China.
Photonics Research Centre, Department of Electronic and Information Engineering, The Hong Kong Polytechnic University, Hung Hom, Hong Kong.
Sci Rep. 2017 Aug 23;7(1):9224. doi: 10.1038/s41598-017-10028-3.
Deep-ultraviolet (UV) second-harmonics (SHs) have important applications in basic physics and applied sciences. However, it still remains challenging to generate deep-UV SHs especially in optical fibers. Here, for the first time, we experimentally demonstrate the deep-UV SH generations (SHGs) by combined degenerate four-wave mixing (FWM) and surface nonlinearity polarization in an in-house designed and fabricated air-silica photonic crystal fiber (PCF). When femtosecond pump pulses with average input power P of 650 mW and center wavelength λ of 810, 820, 830, and 840 nm are coupled into the normal dispersion region close to the zero-dispersion wavelength of the fundamental mode of the PCF, the anti-Stokes waves induced by degenerate FWM process are tunable from 669 to 612 nm. Then, they serve as the secondary pump, and deep-UV SHs are generated within the wavelength range of 334.5 to 306 nm as a result of surface nonlinearity polarization at the core-cladding interface of the PCF. The physical mechanism of the SHGs is confirmed by studying the dependences of the output power P of the SHs on the PCF length and time. Finally, we also establish a theoretical model to analyze the SHGs.
深紫外 (UV) 二次谐波 (SH) 在基础物理和应用科学中具有重要应用。然而,特别是在光纤中产生深紫外 SH 仍然具有挑战性。在这里,我们首次通过组合简并四波混频 (FWM) 和表面非线性极化在内部设计和制造的空气-二氧化硅光子晶体光纤 (PCF) 中实验演示了深紫外 SH 产生 (SHG)。当平均输入功率为 650mW 的飞秒泵脉冲和中心波长为 810、820、830 和 840nm 的脉冲耦合到接近 PCF 基模零色散波长的正常色散区域时,由简并 FWM 过程产生的反斯托克斯波从 669nm 调谐到 612nm。然后,它们作为二次泵,深紫外 SH 在 PCF 的芯-包层界面处的表面非线性极化作用下在 334.5nm 到 306nm 的波长范围内产生。SHG 的物理机制通过研究 SH 输出功率 P 对 PCF 长度和时间的依赖性得到了证实。最后,我们还建立了一个理论模型来分析 SHG。