超快光谱学技术进展和挑战
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南京大学 物理学院

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O433.1

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国家重点研发计划资助项目(2022YFB3206901)


Advances and challenges in ultrafast spectroscopy
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    摘要:

    为推动超快光谱学技术创新、拓展其跨学科应用范围,本文系统综述了超快光谱学技术发展现状及面临挑战:介绍了超快光谱学基础定义;对超短脉冲光源、泵浦-探测光谱、二维相干光谱、近场光学等关键技术的原理进行了阐述;结合有机光伏电荷转移、分子化学反应的电子转移、量子限域材料激子精细能级结构和脂质分子光开关等研究实例,详细讨论了各种光谱技术的应用范围和独特优势,并总结了超快光谱技术领域发展的新机遇与未来挑战。

    Abstract:

    To promote technological innovation in ultrafast spectroscopy, broaden its interdisciplinary applications and address the associated research challenges, this paper provides a systematic review of the current development status in ultrafast spectroscopic techniques. The fundamental definition of ultrafast spectroscopy is illustrated. The principles of key techniques including ultrafast pulse sources, pump-probe spectroscopy, two-dimensional coherent spectroscopy, and near-filed optics are introduced. By combining research examples such as charge transfer in organic photovoltaics, electron transfer in molecular chemical reactions, exciton fine energy level structure in quantum-confined materials, and lipid molecular photoswitches, the application scopes and unique advantages of various spectroscopic techniques are discussed in detail. The emerging opportunities and future challenges in the development of ultrafast spectroscopy are also summarized.

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历史
  • 收稿日期:2025-12-31
  • 最后修改日期:2026-04-07
  • 录用日期:2026-04-09
  • 在线发布日期: 2026-04-17
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