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Energy and rf cavity phase symmetry enforcement in multiturn energy recovery linac models

机译:多箱能量回收LINAC模型中的能量和RF腔相位对称实施

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摘要

In a multipass energy recovery linac (ERL), each cavity must regain all energy expended from beam acceleration during beam deceleration, and the beam should achieve specific energy targets during each loop that returns it to the linac. For full energy recovery, and for every returning beam to meet loop energy requirements, we must specify and maintain the phase and voltage of cavity fields in addition to selecting adequate flight times. These parameters are found with a full scale numerical optimization program. If we impose symmetry in time and energy during acceleration and deceleration, fewer parameters are needed, simplifying the optimization. As an example, we present symmetric models of the Cornell BNL ERL Test Accelerator (CBETA) with solutions that satisfy the optimization targets of loop energy and zero cavity loading. An identical cavity design and nearly uniform linac layout make CBETA a potential candidate for symmetric operation.
机译:在一个多通道能量回收直线加速器(ERL),每个腔必须恢复光束减速期间从束加速消耗所有的能量,并且每个循环期间的光束应该达到特定能源目标,它返回到直线加速器。对于全能量回收,并为每个返回的光束,以满足循环的能源需求,我们必须指定并保持腔场的相位和电压除了选择适当的飞行时间。这些参数被发现和满量程的数值优化程序。如果我们加速和减速过程中的时间和精力强加对称性,需要更少的参数,简化了优化。作为一个例子,我们介绍了康奈尔BNL ERL测试加速器(CBETA)的对称模型与满足能源循环和零腔装载的优化目标的解决方案。相同的腔体设计和几乎一致的直线加速器布局使CBETA对称操作的潜在候选者。

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