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Acceleration of 60 MeV proton beams in the commissioning experiment of the SULF-10 PW laser 被引量:5
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作者 A.X.li C.Y.Qin +26 位作者 H.Zhang S.li l.l.Fan Q.S.Wang T.J.Xu N.W.Wang l.H.Yu Y.Xu Y.Q.liu C.Wang X.l.Wang Z.X.Zhang X.Y.liu p.l.bai Z.B.Gan X.B.Zhang X.B.Wang C.Fan Y.J.Sun Y.H.Tang B.Yao X.Y.liang Y.X.leng B.F.Shen l.l.Ji R.X.li Z.Z.Xu 《High Power Laser Science and Engineering》 SCIE CAS CSCD 2022年第4期36-44,共9页
We report the experimental results of the commissioning phase in the 10 PW laser beamline of the Shanghai Superintense Ultrafast Laser Facility(SULF).The peak power reaches 2.4 PW on target without the last amplifying... We report the experimental results of the commissioning phase in the 10 PW laser beamline of the Shanghai Superintense Ultrafast Laser Facility(SULF).The peak power reaches 2.4 PW on target without the last amplifying during the experiment.The laser energy of 72±9 J is directed to a focal spot of approximately 6μm diameter(full width at half maximum)in 30 fs pulse duration,yielding a focused peak intensity around 2.0×10^(21)W/cm^(2).The first laser-proton acceleration experiment is performed using plain copper and plastic targets.High-energy proton beams with maximum cut-off energy up to 62.5 MeV are achieved using copper foils at the optimum target thickness of 4μm via target normal sheath acceleration.For plastic targets of tens of nanometers thick,the proton cut-off energy is approximately 20 MeV,showing ring-like or flamented density distributions.These experimental results reflect the capabilities of the SULF-10 PW beamline,for example,both ultrahigh intensity and relatively good beam contrast.Further optimization for these key parameters is underway,where peak laser intensities of 10^(22)-10^(23)w/cm^(2)are anticipated to support various experiments on extreme field physics. 展开更多
关键词 high-energy proton source laser-plasma interaction ultraintense lasers
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