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ELECTRON CYCLOTRON RESONANCES IN ELECTRON CLOUD DYNAMICS

机译:电子云动力学中的电子回旋谐振

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We report a previously unknown resonance for electron cloud dynamics. The 2D simulation code "POSINST" was used to study the electron cloud buildup at different z positions in the International Linear Collider positron damping ring wiggler. An electron equilibrium density enhancement of up to a factor of 3 was found at magnetic field values for which the bunch frequency is an integral multiple of the electron cyclotron frequency. At low magnetic fields the effects of the resonance are prominent, but when B exceeds ~(2πm_ec/(el_b)), with l_b = bunch length, effects of the resonance disappear. Thus short bunches and low B fields are required for observing the effect. The reason for the B field dependence, an explanation of the dynamics, and the results of the 2D simulations and of a single-particle tracking code used to elucidate details of the dynamics are discussed.
机译:我们向电子云动态报告了先前未知的谐振。 2D仿真代码“POSINST”用于研究国际线性撞机正电子阻尼环Wiggler的不同Z位置的电子云积累。 在磁场值中发现了高达3个因子的电子平衡密度增强,其束频率是电子回流频率的整体倍数。 在低磁场处,谐振的效果突出,但是当B超过〜(2πm_ec/(el_b))时,带有l_b =束长度,谐振的效果消失。 因此,需要短束和低B场来观察效果。 讨论了B场依赖性的原因,动态的说明以及用于阐明动态的细节的2D模拟和单粒跟踪代码的结果。

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