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INT Workshop INT-16-62W Spectrum and Structure of Excited Nucleons from Exclusive Electroproduction, Seattle, Washington, November 14, 2016最新文献

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Electron-Ion Collider 电子离子对撞机
Volker D. Burkert
The group led by Fabrizio Carbone at EPFL and international colleagues have used ultrafast transmission electron microscopy to take attosecond energy-momentum resolved snapshots (1 attosecond = 10-18 or quintillionths of a second) of a free-electron wave function. [25] Now, physicists are working toward getting their first CT scans of the inner workings of the nucleus. [24] The process of the sticking together of quarks, called hadronisation, is still poorly understood. [23] In experimental campaigns using the OMEGA EP laser at the Laboratory for Laser Energetics (LLE) at the University of Rochester, Lawrence Livermore National Laboratory (LLNL), University of California San Diego (UCSD) and Massachusetts Institute of Technology (MIT) researchers took radiographs of the shock front, similar to the X-ray radiology in hospitals with protons instead of X-rays. [22]
由EPFL的Fabrizio Carbone和国际同事领导的小组使用超快透射电子显微镜拍摄了自由电子波函数的阿秒能量动量分辨快照(1阿秒= 10-18或五分之一秒)。现在,物理学家正致力于对原子核的内部工作进行首次CT扫描。夸克粘在一起的过程被称为强子化,人们对这个过程仍然知之甚少。在罗彻斯特大学激光能量学实验室(LLE)、劳伦斯利弗莫尔国家实验室(LLNL)、加州大学圣地亚哥分校(UCSD)和麻省理工学院(MIT)使用OMEGA EP激光器的实验活动中,研究人员拍摄了激波前沿的x射线照片,类似于医院里用质子代替x射线的x射线学。[22]
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INT Workshop INT-16-62W Spectrum and Structure of Excited Nucleons from Exclusive Electroproduction, Seattle, Washington, November 14, 2016
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