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Over the past few decades, the rapid development of ultrafast lasers, such as femtosecond lasers and picosecond lasers, has opened up new avenues for material processing due to their unique features such as ultrashort pulse width and extremely high peak intensity. These techniques have become a common tool for micro- and nanoprocessing of a variety
Over the past few decades, the rapid development of ultrafast lasers, such as femtosecond lasers and picosecond lasers, has opened up new avenues for material processing due to their unique features such as ultrashort pulse width and extremely high peak intensity. These techniques have become a common tool for micro- and nanoprocessing of a variety
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Autorenporträt
Koji Sugioka is a senior research scientist at RIKEN and a guest professor at Tokyo University of Science and Tokyo Denki University, Japan. He received his PhD in electronics from Waseda University, Japan, in 1993. Since he joined RIKEN in 1986, he has been working on laser materials processing. His current interests center on the development of advanced laser micro/nanoprocessing, with applications related to lab-on-a-chip, photonic, and electronic devices. His accomplishments include 7 awards, about 130 articles, and about 80 invited talks at international conferences. He is the editor-in-chief of the Journal of Laser Micro/Nanoengineering, a board member of the Laser Institute of America and Japan Laser Processing Society, and an SPIE Fellow. Ya Cheng is a professor of the Shanghai Institute of Optics and Fine Mechanics (SIOM), Chinese Academy of Sciences, and the deputy director of the State Key Laboratory of High Field Laser Physics, SIOM. He received his BS from Fudan University, China, in 1993 and PhD from SIOM in 1998. Since 1995, he has been working in the fields related to ultrafast photonics. His current research interests include femtosecond laser micromachining, ultrafast nonlinear optics, and strong-field laser physics. He has published more than 100 papers in peer-reviewed journals and given more than 60 invited talks at international conferences. He is an editor of Laser Micro/Nanoengineering and Chinese Physics Letters and the deputy secretary general of the Chinese Optical Society.
Inhaltsangabe
Overview of Ultrafast Laser Processing. Lasers for Ultrafast Laser-Materials Processing. Fundamentals of Ultrafast Laser Processing. Spatial and Temporal Manipulation of Ultrafast Laser Pulses for Micro- and Nanoprocessing. Surface Pattering, Drilling, and Cutting. Ultrafast Laser-Assisted Surface Micro- and Nanostructuring. Nanoablation Using Nanosphere and Nanotip. Ultrafast Laser-Induced Phenomena in Transparent Materials. 3D Photonic Device Fabrication. Fabrication of Microfluidic Chips and Integrated Optofluidic Devices in Glass by Femtosecond Laser Direct Writing. Fabrication of 3D Functional Microdevices by Two-Photon Photopolymerization. Ultrafast Laser Processing: From Micro- to Nanoscale Industrial Applications.
Overview of Ultrafast Laser Processing. Lasers for Ultrafast Laser-Materials Processing. Fundamentals of Ultrafast Laser Processing. Spatial and Temporal Manipulation of Ultrafast Laser Pulses for Micro- and Nanoprocessing. Surface Pattering, Drilling, and Cutting. Ultrafast Laser-Assisted Surface Micro- and Nanostructuring. Nanoablation Using Nanosphere and Nanotip. Ultrafast Laser-Induced Phenomena in Transparent Materials. 3D Photonic Device Fabrication. Fabrication of Microfluidic Chips and Integrated Optofluidic Devices in Glass by Femtosecond Laser Direct Writing. Fabrication of 3D Functional Microdevices by Two-Photon Photopolymerization. Ultrafast Laser Processing: From Micro- to Nanoscale Industrial Applications.
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