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ÐÂ¼ÓÆÂÄÏÑóÀí¹¤´óѧProf. Qi Jie Wang¿ÎÌâ×éÕÐÆ¸¸ß¹¦Âʼ¤¹âÆ÷Ïà¹Ø²©ºó ÒÑÓÐ3È˲ÎÓë
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Íõ᪽ݽÌÊÚĿǰÔÚÐÂ¼ÓÆÂÄÏÑóÀí¹¤´óѧÈν̣¬¾ÍÖ°ÓÚµç×ÓµçÆ÷¹¤³ÌϵºÍÎïÀí¼°Ó¦ÓÃÎïÀíϵ¡£Ä¿Ç°£¬ËûµÄ¿ÎÌâ×éÓм¸¸ö²©Ê¿ºó£¬×ÊÉʿºóÃû¶î¿ªÊ¼ÕÐÊÕ£¬¹ØÓÚ High power solid-state and fiber lasers for high harmonic generationµÄ¹ú¼ÒÏîÄ¿¡£Ï£ÍûÓÐhigh power ultrafast solid-state laser, high power ultrafast fiber laser, nonlinear optics, plasmon physics, µÈ·½ÃæÑо¿ (ÀíÂÛ»òʵÑé) µÄ²©Ê¿ºó£¬ ¾ßÌåְλµÄÒªÇóÈçÏ£º 1£® Position in high power ultrafast solid-state lasers This project aims to develop infrared optical parametric chirp pulse amplification (OPCPA) solid-state laser source. The job scope includes the development of infrared high power femtosecond lasers, optical parametric amplifier design and experiments, chirped pulse amplification, and compression. The candidates should have solid-state ultrafast laser and nonlinear optics background, good optics laboratory skills, and good communication skills in a collaborative environment. Experimental experience in optical parametric amplifiers and chirped pulse amplification would be an advantage. 2£® Position in high harmonic generation for XUV/X-ray source development This project aims to use cutting-edge ultrashort-pulse high-power laser technology for high flux coherent extreme ultraviolet XUV/X-ray source development. Cutting edge equipments and state of the art facility including 7 fs ultrafast laser pulse, FIB, super-high power pump laser, super-resolution X-ray spectrometer are available. Candidates need to have one or more of the following expertise in ultrafast (fs to as) laser system, high harmonic generation (HHG), electron-light interaction, high-field physics, Mid-Infrared or XUV optics, in experiments and/or theories. Experience on vacuum system design, lightwave control, photonelectron-spectroscopy will be considered with high priority. 3£® Position in high power ultrafast fiber laser and applications This project aims to develop high energy high rep-rate laser sources for high harmonic generation (HHG) for extreme ultraviolet source. This includes the development of fiber-based high-power, high rep-rate laser sources with cavity enhancement. The candidates should have familiarity with both experimental and theoretical aspects of high power and/or ultrafast laser sources, good optics laboratory skills, and good communication skills in a collaborative environment. Experimental experience in XUV optics would be an advantage. ÄÏÑóÀí¹¤´óѧÕâЩÄêÔÚ·ÉËÙ½ø²½, ×î½üÒ»ÆÚµÄÄêÇá´óѧ(<50Äê)ÆÀ±ÈÅÅÃûµÚÒ»¡£ ÌØ±ðÊǹ¤³Ì¼°ÎïÀíѧԺ, ¿ÆÑÐÒѾßÓзdz£¸ßµÄˮƽ¡£Ñ§Ð£¿ÆÑÐͶÈëÒ²ºÜ´ó¡£¸ÐÐËȤµÄͬѧ¿ÉÒԲο´Ñ§Ð£µÄÍøÒ³: www.ntu.edu.sg (school of electrical engineering; school of physical and mathematical science). Çë¸ÐÐËȤµÄͬѧֱ½Ó¸úÍõ½ÌÊÚÁªÏµ£¬°Ñ¼òÀú·¢µ½ËûµÄÓÊÏä qjwang@ntu.edu.sg Prof. Qijie Wang Center Director of Photonics Center of Excellence School of Electrical and Electronic Engineering & School of Physical and Mathematical Sciences Blk S2.1-B2-20, Nanyang Ave 50 Singapore 639798 Email: qjwang@ntu.edu.sg Phone: (65)-67905431 |
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