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Proposed scaling law for intensity evolution in hadron storage rings based on dynamic aperture variation with time

机译:提出的基于动态孔径随时间变化的强子存储环强度演化的缩放定律

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A scaling law for the time dependence of the dynamic aperture, i.e., the region of phase space where stable motion occurs, has been proposed in previous papers [M. Giovannozzi, W. Scandale, E. Todescoand , Part. Accel. 56, 195 (1996); M. Giovannozzi, W. Scandale, and E. Todesco, in Proceedings of the 1997 Particle Accelerator Conference, edited by M. Comyn, M. K. Craddock, M. Reiser, and J. Thomson (IEEE Service Center, Piscataway, NJ, 1997), p. 1445; M. Giovannozzi, W. Scandale, and E. Todesco, Phys. Rev. E 57, 3432 (1998)]. This law, based on the analysis of numerical simulations data, is not entirely phenomenological, but motivated by some fundamental theorems of the theory of dynamical systems and indicates that the dynamic aperture has a logarithmic dependence on time. This result is used in turn as a basis for deriving a scaling law for the intensity evolution in hadron storage rings. This relationship is presented and discussed in detail in this paper. Furthermore, experimental data were compared to the predictions of this law and showed a remarkable agreement.
机译:在先前的论文中已经提出了动态孔径随时间变化的比例定律,即发生稳定运动的相空间区域。 Giovannozzi,W.Scandale,E.Todescoand,第1部分。加速56,195(1996); M. Giovannozzi,W.Scandale和E.Todesco,在M.Comyn,MK Craddock,M.Reiser和J.Thomson编辑的《 1997年粒子加速器会议论文集》(IEEE服务中心,新泽西州皮斯卡塔维,1997年)中。 ,第1445; M. Giovannozzi,W。Scandale和E.Todesco,物理学。 E 57,3432(1998)]。基于对数值模拟数据的分析,该定律不完全是现象学的,而是受动力学系统理论的一些基本定理驱动的,并表明动态孔径对时间具有对数依赖性。该结果又被用作推导强子存储环中强度演化的缩放定律的基础。本文将详细介绍和讨论这种关系。此外,将实验数据与该定律的预测进行了比较,并显示出显着的一致性。

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