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Linear theory of transverse and longitudinal ionization cooling in a quadrupole channel

机译:四极通道中横向和纵向电离冷却的线性理论

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摘要

Ionization cooling is the best-known cooling mechanism for the envisioned muon colliders and neutrino factories. In this paper, using the moment-equation approach, we present a linear theory of ionization cooling dynamics in 6D phase space in a quadrupole focusing channel. A simple set of differential equations that governs the evolution of both the transverse and longitudinal emittances is derived, and closed-form solutions are given. Two new significant heating processes have been identified. This theory is analogous to the standard linear theory in electron storage rings. Multiple scattering integrals and energy straggling integrals, quantities like the synchrotron radiation integrals, are introduced to specify the cooling process and the equilibrium emittances in a periodic cooling channel.
机译:对于设想的μ对撞机和中微子工厂,电离冷却是最著名的冷却机制。在本文中,我们采用矩等式方法,提出了四极聚焦通道中6D相空间中电离冷却动力学的线性理论。导出了一组控制横向和纵向发射率的演化的微分方程组,并给出了封闭形式的解。已经确定了两个新的重要加热过程。该理论类似于电子存储环中的标准线性理论。引入多个散射积分和能量散布积分,例如同步加速器辐射积分,以指定冷却过程和周期性冷却通道中的平衡发射率。

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