论文标题

用脉冲电子镜头在强子同步子中用脉冲电子镜头的横向头尾不稳定性阻尼

Landau damping of transverse head-tail instabilities with a pulsed electron lens in hadron synchrotrons

论文作者

Gubaidulin, Vadim, Kornilov, Vladimir, Boine-Frankenheim, Oliver, Métral, Elias

论文摘要

脉冲电子镜头沿强子束产生betatron曲调移位,这是纵向坐标的函数,这是纵向引起的。横向引导的一个例子是由于八杆磁体而引起的曲调偏移。本文将脉冲电子镜头视为减轻头尾不稳定性的措施。使用vlasov形式主义中的详细分析描述,提出了纵向和横向失谐的相干性能。将分析预测与粒子跟踪模拟的结果进行了比较。证明脉冲电子镜头是带有两个组成部分的曲调传播的来源:静态的镜头,导致Landau阻尼;和动态的,导致有效的阻抗修饰,我们在分析和粒子跟踪模拟中证明了这一动态。有效的阻抗修饰对于由于引起纵向失沟的设备而引起的梁稳定性很重要,尤其是对于非零头尾模式。弗拉索夫的形式主义被扩展到包括纵向和横向失效的结合。作为在SIS100重型离子同步器(在德国GSI Darmstadt公平的)中可能应用的,考虑了脉冲电子透镜与八极磁体的组合。

A pulsed electron lens produces a betatron tune shift along a hadron bunch as a function of the longitudinal coordinates, which is a longitudinal detuning. An example of transverse detuning are the tune shifts due to octupole magnets. This paper considers a pulsed electron lens as a measure to mitigate the head-tail instabilities. Using a detailed analytical description within a Vlasov formalism, the coherent properties of the longitudinal and transverse detuning are presented. The analytical predictions are compared with the results of the particle tracking simulations. A pulsed electron lens is demonstrated to be a source of tune spread with two components: a static one, leading to Landau damping; and a dynamic one, leading to an effective impedance modification, which we demonstrate analytically and in our particle tracking simulations. The effective impedance modification can be important for beam stability due to devices causing a longitudinal detuning, especially for nonzero head-tail modes. The Vlasov formalism is extended to include the combination of longitudinal and transverse detuning. As a possible application at the SIS100 heavy-ion synchrotron (FAIR at GSI Darmstadt, Germany), a combination of a pulsed electron lens with octupole magnets is considered.

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