Roadmap on nonlinear optics–focus on Chinese research

Roadmap on nonlinear optics–focus on Chinese research
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DOI:
10.1088/2515-7647/acdb17
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发表时间:
2023-06
期刊:
Journal of Physics: Photonics
影响因子:
--
通讯作者:
M. Ren;Jingjun Xu;P. Lan;P. Lu;Zhiyuan Li;Lihong Hong;Yulei Wang;Zhen-xu Bai;Zhiwei Lv
M. Ren;Jingjun Xu;P. Lan;P. Lu;Zhiyuan Li;Lihong Hong;Yulei Wang;Zhen-xu Bai;Zhiwei Lv
中科院分区:
其他
文献类型:
--
作者:
M. Ren;Jingjun Xu;P. Lan;P. Lu;Zhiyuan Li;Lihong Hong;Yulei Wang;Zhen-xu Bai;Zhiwei Lv

文献摘要

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在非线性光学系统中,光学叠加原理被打破。系统的响应(包括极化、电流密度等)与其接收到的刺激不成正比。在过去的半个世纪里,非线性光学已经从一个单独的倍频实验发展到一个广阔的学术领域。非线性光学不仅带来了新的物理和现象,而且已经成为通信、健康、先进制造等许多对我们生活至关重要的领域的使能技术。本路线图概述了非线性光学的一些新兴领域,并特别关注了中国的研究。每一节都概述了该领域某一部分目前和未来的挑战,突出了未来研究和发展最令人兴奋的机会。
In nonlinear optical systems, the optical superposition principle breaks down. The system’s response (including electric polarization, current density, etc) is not proportional to the stimulus it receives. Over the past half century, nonlinear optics has grown from an individual frequency doubling experiment into a broad academic field. The nonlinear optics has not only brought new physics and phenomena, but also has become an enabling technology for numerous areas that are vital to our lives, such as communications, health, advanced manufacturing, et al. This Roadmap surveys some of the recent emerging fields of the nonlinear optics, with a special attention to studies in China. Each section provides an overview of the current and future challenges within a part of the field, highlighting the most exciting opportunities for future research and developments.