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Single-particle dynamics in electron storage rings with extremely low emittance

机译:发射极低的电子存储环中的单粒子动力学

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Electron storage rings are widely used for high luminosity colliders, damping rings in high-energy linear colliders, and synchrotron light sources. They have become essential facilities to study high-energy physics and material and medical sciences. To further increase the luminosity of colliders or the brightness of synchrotron light sources, the beam emittance is being continually pushed downward, recently to the nanometer region. In the next decade, another order of reduction is expected. This requirement of ultra-low emittance presents many design challenges in beam dynamics, including better analysis of maps and improvement of dynamic apertures. To meet these challenges, we have refined transfer maps of common elements in storage rings and developed a new method to compute the resonance driving terms as they are built up along a beamline. The method is successfully applied to a design of PEP-X as a future light source with 100-pm emittance. As a result, we discovered many unexpected cancelations of the fourth-order resonance terms driven by sextupoles within an achromat.
机译:电子存储环广泛用于高亮度对撞机,高能线性对撞机中的阻尼环以及同步加速器光源。它们已成为研究高能物理,材料和医学的必不可少的设施。为了进一步增加对撞机的发光度或同步加速器光源的亮度,光束发射率不断地向下推动,最近被推向纳米区域。在接下来的十年中,预计还会有另一个削减幅度。超低发射的这一要求在光束动力学方面提出了许多设计挑战,包括更好地分析地图和改善动态孔径。为了应对这些挑战,我们完善了存储环中常见元素的传递图,并开发了一种新方法来计算沿束线建立的共振驱动项。该方法已成功地应用于PEP-X的设计中,作为未来100pm发光的光源。结果,我们发现了由消色差内六极杆驱动的许多四阶共振项的意外消除。

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