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Suppression of injection bump leakage caused by sextupole magnets within a bump orbit

机译:抑制由颠簸轨道内的六极磁体引起的喷射颠簸泄漏

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摘要

We propose a scheme to suppress leakage of an injection bump orbit caused by sextupole magnets within the bump orbit. Since the bump leakage excites a stored beam oscillation synchronized with beam injection, its suppression is one of the most crucial issues for achieving top-up operation at third generation synchrotron radiation (SR) sources. In the common case where sextupole magnets are located within the bump orbit, the condition for closing the bump depends on the amplitude of the bump orbit due to the nonlinear kicks by the sextupole magnets. Accordingly the bump orbit never closes for all amplitudes even under ideal condition. To solve this problem, we use a minimal condition for emittance increase due to the bump leakage caused by sextupole magnets in the lowest order of the nonlinear perturbation. The condition is obtained by optimizing linear optics and satisfying specific relation among integrated strengths of the sextupole magnets within the bump orbit. Furthermore, the condition does not depend on the bump amplitude. Calculations using the perfectly similar field patterns reveal that the proposed scheme can reduce the rms of the stored beam oscillation down to a few tens of microns for all bump amplitudes. The residual oscillation is negligibly small compared to the horizontal beam sizes presently achieved in the SR sources. The suppression effect of the scheme was also confirmed experimentally by the results obtained at the SPring-8 storage ring. (c) 2004 Elsevier B.V. All rights reserved.
机译:我们提出一种方案来抑制由凸起轨道内的六极磁体引起的注入凸起轨道的泄漏。由于凸点泄漏激发了与束注入同步的存储束振荡,因此抑制它是在第三代同步加速器辐射(SR)源上实现增值操作的最关键问题之一。在六极磁体位于颠簸轨道内的常见情况下,由于六极磁体产生的非线性反冲,闭合颠簸的条件取决于颠簸轨道的振幅。因此,即使在理想条件下,颠簸轨道也不会针对所有振幅关闭。为了解决这个问题,我们使用了一个最小的条件来提高发射率,这是由于六极磁极以最低的非线性扰动引起的凸点泄漏引起的。通过优化线性光学器件并满足凸块轨道内六极磁体的集成强度之间的特定关系来获得该条件。此外,条件不取决于凸块振幅。使用完全相似的场模式进行的计算表明,对于所有凸点振幅,所提出的方案都可以将存储的光束振荡的均方根值降低至几十微米。与目前在SR源中获得的水平光束尺寸相比,残余振荡很小,可以忽略不计。通过在SPring-8存储环上获得的结果,实验还证实了该方案的抑制效果。 (c)2004 Elsevier B.V.保留所有权利。

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