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Pseudo-rapidity distribution from a perturbative solution of viscous hydrodynamics for heavy ion collisions at RHIC and LHC
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作者 江泽方 杨纯斌 +1 位作者 丁驰 吴祥宇 《Chinese Physics C》 SCIE CAS CSCD 2018年第12期19-24,共6页
The charged-particle final state spectrum is derived from an analytic perturbative solution for relativistic viscous hydrodynamics. By taking into account the longitudinal acceleration effect in relativistic viscous h... The charged-particle final state spectrum is derived from an analytic perturbative solution for relativistic viscous hydrodynamics. By taking into account the longitudinal acceleration effect in relativistic viscous hydrody namics, the pseudorapidity spectrum describes the nucleus-nucleus colliding systems at RHIC and the LHC well. Based on both the extracted longitudinal acceleration parameter λ^* and a phenomenological description of λ^*, the charged-particle pseudorapidity distributions for √SNN= 5.44 TeV Xe+Xe collisions are computed from the final state expression in a limited space-time rapidity ~/8 region. 展开更多
关键词 viscous hydrodynamics final state observable pseudorapidity distributions longitudinal acceleration effect xenon+xenon collisions
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Impedance measurements of the extraction kicker system for the rapid cycling synchrotron of China Spallation Neutron Source
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作者 黄良生 王生 +3 位作者 刘瑜冬 李勇 刘仁洪 肖欧正 《Chinese Physics C》 SCIE CAS CSCD 2016年第4期106-112,共7页
The fast extraction kicker system is one of the most important accelerator components and the main source of impedance in the Rapid Cycling Synchrotron of the China Spallation Neutron Source. It is necessary to unders... The fast extraction kicker system is one of the most important accelerator components and the main source of impedance in the Rapid Cycling Synchrotron of the China Spallation Neutron Source. It is necessary to understand the kicker impedance before its installation into the tunnel. Conventional and improved wire methods are employed in the impedance measurement. The experimental results for the kicker impedance are explained by comparison with simulation using CST PARTICLE STUDIO. The simulation and measurement results confirm that the window-frame ferrite geometry and the end plate are the important structures causing coupling impedance. It is proved in the measurements that the mismatching from the power form network to the kicker leads to a serious oscillation sideband of the longitudinal and vertical impedance and the oscillation can be reduced by ferrite absorbing material. 展开更多
关键词 impedance cycling synchrotron ferrite accelerator longitudinal installation explained magnet absorbing
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