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Optimization of accelerator parameters using normal form methods on high-order transfer maps.

机译:在高阶传递图上使用范式方法优化加速器参数。

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摘要

Methods of analysis of the dynamics of ensembles of charged particles in collider rings are developed. The following problems are posed and solved using normal form transformations and other methods of perturbative nonlinear dynamics: (1) Optimization of the Tevatron dynamics: (a) Skew quadrupole correction of the dynamics of particles in the Tevatron in the presence of the systematic skew quadrupole errors in dipoles; (b) Calculation of the nonlinear tune shift with amplitude based on the results of measurements and the linear lattice information; (2) Optimization of the Muon Collider storage ring: (a) Computation and optimization of the dynamic aperture of the Muon Collider 50x50 GeV storage ring using higher order correctors; (b) 750x750 GeV Muon Collider storage ring lattice design matching the Tevatron footprint.; The normal form coordinates have a very important advantage over the particle optical coordinates: if the transformation can be carried out successfully (general restrictions for that are not much stronger than the typical restrictions imposed on the behavior of the particles in the accelerator) then the motion in the new coordinates has a very clean representation allowing to extract more information about the dynamics of particles, and they are very convenient for the purposes of visualization.; All the problem formulations include the derivation of the objective functions, which are later used in the optimization process using various optimization algorithms. Algorithms used to solve the problems are specific to collider rings, and applicable to similar problems arising on other machines of the same type.; The details of the long-term behavior of the systems are studied to ensure the their stability for the desired number of turns. The algorithm of the normal form transformation is of great value for such problems as it gives much extra information about the disturbing factors. In addition to the fact that the dynamics of particles is represented in a way that is easy to understand, such important characteristics as the strengths of the resonances and the tune shifts with amplitude and various parameters of the system are calculated.; Each major section is supplied with the results of applying various numerical optimization methods to the problems stated. The emphasis is made on the efficiency comparison of various approaches and methods. The main simulation tool is the arbitrary order code COSY INFINITY written by M. Berz, K. Makino, et al. at Michigan State University. Also, the code MAD is utilized to design the 750x750 GeV Muon Collider storage ring baseline lattice.; The OptiM to COSY lattice converter is written specifically for the need of the studies included into the dissertation, and tested on the Tevatron accelerator lattice.
机译:提出了对撞环中带电粒子团簇动力学的分析方法。使用范式变换和其他扰动非线性动力学方法,提出并解决了以下问题:(1)优化Tevatron动力学:(a)在存在系统性偏斜四极杆的情况下,对Tevatron中粒子动力学的偏斜四极校正偶极误差; (b)根据测量结果和线性晶格信息计算出具有幅度的非线性调谐位移; (2)优化Muon Collider存储环:(a)使用高阶校正器计算和优化Muon Collider 50x50 GeV存储环的动态孔径; (b)与Tevatron尺寸相匹配的750x750 GeV Muon Collider储物环格设计。法线形式坐标相对于粒子光学坐标具有非常重要的优势:如果可以成功进行转换(对此的一般限制并不强于对加速器中粒子行为施加的典型限制),则运动新坐标中的坐标非常清晰,可以提取有关粒子动力学的更多信息,并且它们非常便于可视化。所有问题的表述都包括目标函数的推导,这些目标函数随后将在使用各种优化算法的优化过程中使用。用于解决问题的算法特定于对撞机环,并且适用于在相同类型的其他机器上出现的类似问题。研究了系统长期行为的详细信息,以确保它们在所需匝数下的稳定性。范式转换算法对于此类问题非常有价值,因为它提供了有关干扰因素的大量额外信息。除了以易于理解的方式表示粒子的动力学外,还计算了诸如共振强度和随振幅变化的音调和系统各种参数之类的重要特征。每个主要部分都提供了将各种数值优化方法应用于所述问题的结果。重点放在各种方法和方法的效率比较上。主要的仿真工具是M. Berz,K。Makino等人编写的任意顺序代码COZY INFINITY。在密歇根州立大学。同样,代码MAD用于设计750x750 GeV Muon Collider存储环基线网格。 OptiM到COZY晶格转换器是专门为满足研究需要而编写的,并在Tevatron加速器晶格上进行了测试。

著录项

  • 作者

    Snopok, Pavel.;

  • 作者单位

    Michigan State University.;

  • 授予单位 Michigan State University.;
  • 学科 Physics Elementary Particles and High Energy.
  • 学位 Ph.D.
  • 年度 2007
  • 页码 140 p.
  • 总页数 140
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 高能物理学;
  • 关键词

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