武汉光电论坛第165期:
我们如何做科研?----飞秒激光与物质相互作用的启示
报告题目:我们如何做科研?----飞秒激光与物质相互作用的启示
How to do research?---some enlightenments from fs laser interaction with matter
时 间:2020年5月27日19:00-20:30
报 告 人:邱建荣 教授, 浙江大学
邀 请 人:张静宇 教授
地 点:腾讯会议 448 948 437
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报告人简介:
教育部“玻璃光纤材料与器件”创新团队带头人,主要从事功能玻璃、超快激光与玻璃相互作用以及无机发光材料的研究。迄今为止发表SCI收录论文500余篇(国际权威期刊如Nature Photonics,Nature Commun., Adv. Mater., J. Am. Chem. Soc., Angew. Chem. Int. Ed., Phys. Rev. Lett.等影响因子大于3的300篇),被SCI他引21500余次。申请专利100项,授权50项(国外4项)。在OECC等国际会议作大会或邀请报告120次。8项研究成果被Nature的Science Update等作了介绍。1999年获日本稀土学会足立奖。2005年获德国Abbe基金国际Otto-Schott研究奖,2007年获日本陶瓷协会学术奖。2016年获美国陶瓷学会Morey奖。兼任中国激光杂志社激光与光电子学进展执行主编,中国硅酸盐学报、美国陶瓷学会、日本陶瓷学会、J. Non-Cryst. Solids等期刊的副主编或编委。美国光学学会和美国陶瓷学会Fellow。
Biography:
Dr. Jianrong Qiu is now Chair Professor of Cheung Kong Scholars Programme, State Key Laboratory of Optical Instrumentation, Zhejiang University. He is Associate Editor of the Journal of the Chinese Ceramics Society, Int. J. Applied Glass Science (The American Ceramic Society), Asian J. Ceram. Soc., and Journal of Non-Crystalline Solids (Elsevier) etc.. He has published more than 500 papers in the international peer-reviewed journals such as Nature Photonics, Nature Commun., J. Am. Chem. Soc., Angew. Chem. Int. Ed., Adv. Mater. etc. His paper has been cited more than 21500 times. He received several awards including Adachi Award from the Rare-earth Society of Japan (1999), Otto-Schott Research Award from the Ernst Abbe Fund (2005), Germany, Academic Award from the Ceramics Society of Japan (2007) and G. W. Morey Award from the American Ceramic Society (2016). He is managing editor of the Progress in Laser and Optoelectronics etc. He is Fellow of the American Optical Society and the American Ceramic Society.
报告摘要:
我将介绍飞秒激光与物质相互作用的现象、机理和应用,特别是飞秒激光诱导离子价态变化,长余辉发光,折射率变化以及单光束飞秒激光诱导偏振依赖的纳米光栅结构,详细阐述发现的过程以及带给我们的启示。强调飞秒激光与物质的相互作用真的是一片神奇的土地。Abstract:
I will introduce some phenomena about fs laser interaction with matter, including fs laser induced valence state change, persistent phosphorescence, refractive index change and single fs laser beam induced polarization-dependent nanograting, and will describe the discovery stories and some enlightenments from these stories. Finally, I will stress that fs laser interaction with matter is really a mysterious land and worth of exploration.
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