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Studies of beam injection with a compensated bump and uncompensated bump in a synchrotron

机译:同步加速器中带有补偿凸块和未补偿凸块的射束注入的研究

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Synchrotron radiation sources Indus-1 and Indus-2 have a synchrotron as the common injector. A three kicker compensated bump injection scheme was employed for beam injection into this synchrotron. The stored beam current in the synchrotron is higher, when all the three kickers are operated at the same current than when kickers are operated at currents required to generate compensated bump. Beam dynamics studies have been done to understand why this happens. Theoretical studies indicate that higher stored current in the later case is attributed to smaller residual oscillations of injected beam. These studies also reveal that if the angle of the injected beam during beam injection is kept varying, the performance could be further improved. This is experimentally confirmed by injecting the beam on rising part of the injection septum magnet current pulse.
机译:同步辐射源Indus-1和Indus-2具有一个同步加速器作为共同的喷射器。采用三踢脚补偿的凸点注入方案将光束注入该同步加速器。当三个踢脚都以相同电流工作时,同步加速器中存储的束电流要比踢脚以产生补偿凸点所需的电流工作时更高。已经进行了束动力学研究,以了解为什么会发生这种情况。理论研究表明,在后一种情况下,较高的存储电流归因于注入束的较小残留振荡。这些研究还表明,如果在束注入期间注入束的角度保持变化,则性能可以进一步提高。通过在注入间隔磁铁电流脉冲的上升部分上注入束,从实验上可以证实这一点。

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