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多组元材料的结构筛选和硼-碳体系的材料预测
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报告题目:
Ultrafast Optical Sciences
 报告人:
K. Kondo
日本大阪大学激光工程研究所  副教授
报告时间:
2007-03-14 15:30
报告地点:
物理系三楼报告厅
主办单位:
清华大学物理系
  简介:

联系人 龙桂鲁教授 62772692

 

内容简介:

Abstract of my presentation.
With a remarkable progress of an ultrashort laser technology, people can obtain a single sub-femtosecond optical pulse in the lab. This opens a new physical approach to molecular dynamics study, atomic physics , solid state physics, plasma physics etc. Especially, by combining the ultrafast technology and the high power laser technology, a new field so called high field science is appeared. In this field, for example, a dynamics of non-sequential double ionization in Helium can be observed experimentally. In my case, I am trying to apply this technology to study on the dynamics of ultrafast plasma oscillation. There is thought to be a possibility of controlling Giga volt per meter electric field with femtosecond accuracy.

In my talk, firstly I would like to start talking about the basic of the generation of an ultrashort optical pulse. Afterward, I will show the various interesting researches of high field science including my recent study.

CV summary

In 1985, I received the B. S. degree at Division of Science, Kyoto University.
In 1986, I received the M. S. degree at Graduate School of Engineering, Osaka University.
In 1990, I received the Ph. D degree at Graduate School of Engineering, Osaka University.
From 1990 to 1995, I was a research associate in Institute for Solid State Physics, University of Tokyo. There, I have studied on the development of ultrashort high peak power laser and multi-photon process with such extreme laser system.
From 1995 to 2002, I was an assistant professor in Center for TARA, University of Tsukuba. There, I started studying on the interaction between the extremely high optical field and materials.
From 2002, I have been an associate professor in Graduate School of Engineering, Osaka University. I also have started laser fusion research.
Now I am studying on the interaction between the ultrahigh optical field and materials. For generating such extremely high optical field, I also have an interest to the development of ultrashort high peak power laser and a special diagnostic method of such extreme plasmas. Recently, the acceleration of electrons to extreme high energy, which is over 1 GeV, with an ultrafast electron plasma wave is studied. Moreover, I belong to construction team for LFEX laser, which is a big glass chirped pulse amplification laser system for laser fusion study.


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