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Muon Collider interaction region simulation and optimization

机译:Muon Collider交互区域仿真和优化

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Progress in the development of interaction regions (IR) for advanced future colliders, in particular the Muon Collider and the International Linear Collider, require a systematical high-order dynamics study. The effects from high-order beam dynamics become more and more pronounced as the spot size at the interaction point decreases to very small values, 14 cm and 4 cm for the 50 on 50 GeV Muon Collider and Higgs Factory, respectively, and even less for the International Linear Collider. Simultaneous control of geometric and chromatic aberrations is critical to the success of future machines and can only be achieved through the deliberate addition of nonlinear fields in the interaction region itself. This work studies both the correction schemes and the unavoidable impact of high-order correctors - sextupoles, octupoles and even duodecapoles - located in the interaction region close to the low-beta quadrupoles or focusing elements. This study proposes and systematically addresses the evolution of aberrations for different systems of nonlinear correctors and optimizes performance of advanced IRs.
机译:先进的未来对撞机,特别是Muon对撞机和国际线性对撞机,在交互区域(IR)方面的开发进展需要系统的高阶动力学研究。当相互作用点处的光斑尺寸减小到非常小的值时,高阶光束动力学的影响变得越来越明显,50 GeV Muon Collider和Higgs Factory上的50分别为14 cm和4 cm,而对于50 GeV Muon Collider和Higgs Factory则为50 cm。国际线性对撞机。几何和色差的同时控制对于未来机器的成功至关重要,并且只能通过在交互区域本身中故意添加非线性场来实现。这项工作研究了校正方案以及位于靠近低β四极杆或聚焦元件的相互作用区域中的六极杆,八极杆甚至十二极杆的高阶校正器的不可避免的影响。这项研究提出并系统地解决了不同系统的非线性校正器的像差演变问题,并优化了高级红外的性能。

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