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Optics Design of Vertical Excursion Fixed-Field Alternating Gradient Accelerators

Physical review accelerators and beams(2021)SCI 2区SCI 3区

STFC Rutherford Appleton Lab

Cited 6|Views11
Abstract
Vertical excursion fixed-field alternating gradient accelerators can be designed with tunes that are invariant with respect to momentum and trajectories that are scaled images of each other displaced only in the vertical direction. This is possible using guiding fields that have a vertical exponential increase, with a skew quadrupole component in the magnet body and a solenoid component at the magnet ends. Numerical analysis was used in optimization due to the coupling effects on orbits and optics. In this paper, idealized magnetic fields are calculated from first principles, taking into account end fields. The parameter dependence of the optics and the dynamic aperture of the ring are calculated for the example of a ring with an approximately 25 m circumference that accelerates proton beams from 3 MeV to 12 MeV. The paper reports for the first time the design of such an accelerator lattice using tools specifically devised to analyze transverse coupled optics without the need for approximations.
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要点】:本研究首次提出并设计了一种垂直振动固定场交变梯度加速器,其特点是在动量和轨迹上具有不变性,使用了具有垂直指数增长引导场和斜四极子组件的磁铁,以及端部具有螺线管组件的磁铁。

方法】:作者通过数值分析优化了加速器的设计,考虑了轨道和光学之间的耦合效应,并从第一性原理出发计算了理想化的磁场,同时考虑了端部磁场的影响。

实验】:本研究对一个周长大约为25米的环进行了参数依赖性分析和动态孔径计算,以将质子束从3 MeV加速到12 MeV为例,但未提及具体使用的数据集名称。该论文报告了此类加速器格子的设计,使用了专门分析横向耦合光学而不需要近似的方法。