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首页> 外文期刊>Physics of plasmas >First experimental evidence of hydrodynamic tunneling of ultra–relativistic protons in extended solid copper target at the CERN HiRadMat facility
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First experimental evidence of hydrodynamic tunneling of ultra–relativistic protons in extended solid copper target at the CERN HiRadMat facility

机译:在CERN HiRadMat设施中,超相对论质子在扩展的固态铜靶中进行流体动力学隧穿的第一个实验证据

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摘要

A novel experiment has been performed at the CERN HiRadMat test facility to study the impact of the 440 GeV proton beam generated by the Super Proton Synchrotron on extended solid copper cylindrical targets. Substantial hydrodynamic tunneling of the protons in the target material has been observed that leads to significant lengthening of the projectile range, which confirms our previous theoretical predictions [N. A. Tahir et al., Phys. Rev. Spec. Top.-Accel. Beams 15, 051003 (2012)]. Simulation results show very good agreement with the experimental measurements. These results have very important implications on the machine protection design for powerful machines like the Large Hadron Collider (LHC), the future High Luminosity LHC, and the proposed huge 80 km circumference Future Circular Collider, which is currently being discussed at CERN. Another very interesting outcome of this work is that one may also study the field of High Energy Density Physics at this test facility.
机译:在CERN HiRadMat测试设备上进行了一项新颖的实验,以研究Super Proton Synchrotron产生的440 GeV质子束对扩展的固态铜圆柱靶的影响。已经观察到靶材料中质子的大量流体动力学隧穿导致了射弹射程的显着延长,这证实了我们先前的理论预测[N. A.Tahir等,物理学。版本规格顶-加速。梁15,051003(2012)。仿真结果与实验测量结果非常吻合。这些结果对于诸如大型强子对撞机(LHC),未来的高光度LHC以及拟议的80公里长的未来圆形对撞机等强大机器的机器保护设计具有非常重要的意义,CERN目前正在对此进行讨论。这项工作的另一个非常有趣的成果是,人们还可以在该测试机构研究高能量密度物理领域。

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