Li Huangjia, Ma Boqin
School of Data Science and Media Intelligence, Communication University of China, Beijing, 100024, China.
Front Optoelectron. 2020 Mar;13(1):35-49. doi: 10.1007/s12200-019-0946-x. Epub 2019 Nov 11.
Since the lasers at fixed wavelengths are unable to meet the requirements of the development of modern science and technology, nonlinear optics is significant for overcoming the obstacle. Investigation on frequency conversion in ferroelectric nonlinear photonic crystals with different superlattices has been being one of the popular research directions in this field. In this paper, some mature fabrication methods of nonlinear photonic crystals are concluded, for example, the electric poling method at room temperature and the femtosecond direct laser writing technique. Then the development of nonlinear photonic crystals with one-dimensional, two-dimensional and three-dimensional superlattices which are used in quasi-phase matching and nonlinear diffraction harmonic generation is introduced. In the meantime, several creative applications of nonlinear photonic crystals are summarized, showing the great value of them in an extensive practical area, such as communication, detection, imaging, and so on.
由于固定波长的激光无法满足现代科学技术发展的需求,非线性光学对于克服这一障碍具有重要意义。对具有不同超晶格的铁电非线性光子晶体中的频率转换进行研究一直是该领域热门的研究方向之一。本文总结了一些成熟的非线性光子晶体制造方法,例如室温下的电场极化法和飞秒激光直写技术。然后介绍了用于准相位匹配和非线性衍射谐波产生的具有一维、二维和三维超晶格的非线性光子晶体的发展情况。与此同时,总结了非线性光子晶体的几个创新性应用,展示了它们在通信、检测、成像等广泛实际领域中的巨大价值。