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Study of electrostatic-magnetic deflector for CEPC

机译:CEPC静电磁铅的研究

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Purpose As the key component for the Higgs operating mode of Circular Electron-Positron Collider (CEPC), the electrostatic-magnetic deflectors are required by the double ring collider to separate the electron and the positron beams horizontally in the RF regions. The electric field is required to reach 2 MV/m with the vacuum pressure of less than 2 x 10(-10) Torr. The deflectors make use of both electric and magnetic fields to deflect the beams. The incoming beam gets zero deflection, but the outgoing beam is deflected by the combined effect of the electric and magnetic forces. W and Z modes use the same cavities with H mode to save budget. The deflectors are large contributors to the overall beam impedance which is necessary to be reduced as much as possible. Methods The electric and magnetic field optimization has been performed by the Opera. The beam impedance study has been carried out using the Computer Simulation Technology (CST) particle studio. Results The shape of the electrode is optimized for a good electric field homogeneity (+/- 0.05%) in 46 mm x 40 mm region. The electric field and the magnetic field could be matched perfectly in the main body of the deflector by bending the electrodes and introducing magnetic field clamps and mirror plates. The beam loss factor decreases by about 20% via the introduction of ground electrodes and tapering ends. Conclusions The design results successfully meet the physical requirements, and the mechanical design has been finished.
机译:目的作为圆形电子 - 正电子碰撞器(CEPC)的HIGGS操作模式的关键部件,双环撞机需要静电磁导偏转器,以将电子和正电子束水平分离在RF区域中。需要电场达到2mV / m,真空压力小于2×10( - 10)托。偏转器利用电场和磁场来偏转光束。进入光束得到零偏转,但输出光束通过电力和磁力的组合效应偏转。 W和Z模式使用具有H模式的相同空腔以节省预算。偏转器是对整个光束阻抗的大贡献者,这是必须尽可能减少所必需的。方法采用电动磁通和磁场优化。使用计算机仿真技术(CST)粒子工作室进行了光束阻抗研究。结果电极的形状优化,在46mm×40mm区域中优化了良好的电场均匀(+/- 0.05%)。电场和磁场可以通过弯曲电极并引入磁场夹具和镜板,在偏转器的主体中完美地匹配。通过引入接地电极和锥形端,光束损耗因子减小约20%。结论设计结果成功符合物理要求,机械设计已完成。

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