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第288期“工物学术论坛” 报告题目:Hadron Physics with SoLID at JLab and Future EIC 报 告 人:Jian-ping Chen,Jefferson Lab 报告时间:2018年 7月 24日(星期二) 上午 10:00 报告地点:清华大学刘卿楼402 主 持 人:王义 教授 报告摘要: Breakthroughs in sub-atomic physics are often made possible by advancements in cutting-edge technologies. Innovations in accelerators, polarized and cryogenic targets, detectors, data acquisition and electronics, computing and software are crucial to the rapid progress in high-energy nuclear physics. I will discuss recent progresses and future perspectives in hadron physics and related technical aspects. Near-term future program at Jefferson Lab after recent electron accelerator energy upgrade will be discussed with a focus on a challenging detector project – SoLID. To deal with very high rate, technologies beyond the current world-best are often required. Research and development efforts in detectors, readout electronics and software algorisms will be discussed. Longer-term future in hadron physics will require a polarized electron-ion collider (EIC). This will be the next new facility in US as planned through the long-range planning process. Recently a possible EIC in China has also been discussed. I will give an overview on the future EIC projects. 报告人简介: Chen, Jian-ping (陈剑平): Senior Staff Scientist, Jefferson Lab 2011-now; Senior Staff Scientist, Jefferson Lab 1994-2011; Staff Scientist, Jefferson Lab 1992-1994; Postdoc, MIT 1990-1992; Postdoc, U. Virginia 1990: Ph.D., U. Virginia 1982: B.Sc., 中国科技大学 APS Fellow, 2008. Guest Professor of many Chinese Universities, Spokesperson of many JLab experiments; Project manager/leader for several large hardware and physics projects, including the planned large detector SoLID project and the JLab polarized 3He target system which has the world-best performance in terms of figure-of-merit. Chair of Program Advisory Committee, HiGS @TUNL; Chair/member of organizing/advisory committees for many international conferences; Published over 200 papers; Presented over 100 invited talks; Research interests: experimental study of high-energy nuclear/hadron physics.
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