中国科学院上海光学精密机械研究所(简称:上海光机所)成立于1964年5月,是我国建立最早、规模最大的激光科学技术专业研究所。发展至今,已形成以探索现代光学重大基础及应用基础前沿、发展大型激光工程技术并开拓激光与光电子高技术应用为重点的综合性研究所。研究...
中国科学院上海光学精密机械研究所(简称:上海光机所)是我国建立最早、规模最大的激光专业研究所,成立于1964年,现已发展成为以探索现代光学重大基础及应用基础前沿研究、发展大型激光工程技术并开拓激光与光电子高技术应用为重点的综合性研究所。重...
上海光机所国际合作工作始终围绕上海光机所的主责主业,以服务重大任务和国家需求为牵引,强化目标导向,注重内外集成协同,加强重大国际合作任务的谋划。坚持“战略布局,需求牵引,技术引领,合作共赢”的原则,基于科技部授予的国家国际科技合作基地及本单位学科技术优势,围绕“一带一路”国家倡议,深化拓展与发达国家实质性合作,夯实海外机构建设,积极培育和发起国际大科学计划,加强国际组织任职推荐,组织相关国际会议等,汇聚各类国际人才,建立以“平台-人才-项目-组织”合作模式,融入全球创新合作网络,助力上海光机所成为国际一流科研机构。上海光机所国际合作一直得到所领导的高度重视,历届所长亲自主管国际合作。1972年,上海光机所接待诺贝尔奖的美籍华裔科学家杨振宁,标志着我所第一次对外开放。2007年,被科技部首批授予“科技部国际科技合作基地”。2016年,科技部首次对全国2006-2008年间认定的113家国际合作基地进行了评估,上海光机所获评“优秀”。2021年,科技部首次对全国719家国际合作基地进行了评估,上海光机所持续获评“ 优秀”。王岐山副主席到上海光机所视察时,对上海光机所近几年取得的系列科技成果,以及重大国际合作项目“中以高功...
作为我国建立最早、规模最大的激光科学技术专业研究所,和首批上海市科普教育基地之一,中国科学院上海光学精密机械研究所(简称:上海光机所)在致力于科技创新的同时,十分重视科普工作。多年来,上海光机所借助科研院所强大的科普资源优势,围绕光学与激光科学技术,积极开展公众开放日、科普讲座、科技课堂、科普作品创...
报告题目:Novel applications of tabletop-scale extreme-UV and X-ray sources implemented using high-order harmonic generation
报告时间:2018年8月8日 13:00–14:0
报告地点:108会议室
报告人:Prof. Henry C. Kapteyn
报告摘要:
250 Word Abstract
As the technology for generating coherent EUV and soft x-ray light advances, tabletop “x-ray laser” sources are being applied to an increasing variety of problems in science and technology. In this talk, I will discuss recent work in our group in a number of areas in materials and molecular science that demonstrate new capabilities. For example, ultrafast EUV pulses can be used as a probe of spin and carrier dynamics using both photoemission and the EUV Magneto-Optic Kerr Effect. Comparing the results from these two approaches yields new insights into dynamic interactions in materials. In other work, we demonstrated the highest resolution tabletop-scale imaging to-date, using coherent EUV for high numerical aperture Coherent Diffractive Imaging. The temporal and spatial resolution provided by using short pulses and short-wavelengths has also allowed us to make the first ultra-high resolution movies of acoustic wave propagation in nanostructures, using a tabletop-scale apparatus. In sum, the emergence of tabletop coherent sources of EUV and soft x-ray light provides a new tool for understanding of materials and for advancing nanotechnology.
100-Word Version
As the technology for generating coherent extreme-UV and soft x-ray light advances, tabletop “x-ray laser” sources are being applied to an increasing variety of problems in science and technology. In this talk, I will discuss recent work in our group in a number of areas in materials and molecular science that demonstrate new capabilities. These area include studies of materials dynamics using multiple experimental approaches, ultrahigh-resolution coherent diffractive imaging that for the first time in the extreme-UV exceeds the wavelength in spatial resolution, and the first movies of nanoscale dynamics done using these sources.
Henry C. Kapteyn is CEO of Kapteyn-Murnane Laboratories Inc. (KMLabs), a Professor of Physics and ECE at the University of Colorado at Boulder, and a fellow of JILA—a research institute joint between the University of Colorado and NIST. He and his wife and long-term collaborator, Margaret Murnane, are well known for their research in femtosecond lasers, and for understanding how to coherently upconvert this light to make a “tabletop x-ray laser” that generates ultrashort bursts of short-wavelength light. In recent years, they have applied this source to pioneering studies of atomic, molecular, and material studies at short length- and time-scales. He has published more than 200 papers in topics ranging from laser science and engineering to materials to nanoimaging. He was elected to the US National Academy of Sciences in 2013, the American Academy of Arts and Sciences in 2018, and is a fellow of the American Physical Society, the Optical Society of America, and the American Association for the Advancement of Science. His awards include the Adolph Lomb Medal of the OSA in 1993, the Ahmed Zewail Award of the ACS in 2009, the R.W. Wood Prize of the OSA in 2010, the Arthur Schawlow Prize of the APS in 2010, and the Willis Lamb Award in Quantum Electronics in 2012. Since 2015, his time has been primarily at KMLabs, spearheading the efforts to commercialize coherent EUV laser technologies and novel ultrafast lasers.
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