论文标题
紧凑等于环体环体的能量极限
Energy limit of compact isochronous cyclotrons
论文作者
论文摘要
相对论能量的现有分析模型通常无效或不精确。开发此类模型的主要困难在于,在较高能量的情况下不能忽略平均磁场和方位角变化的成分之间的跨界面。将这种跨词的严格考虑到需要包含在方程式中的大量术语中。在本文中,开发了一种相对论正确的方法,并提供了实用且易于使用的结果。我们根据颤动,径向衍生物,螺旋角和相对论伽玛的射线和垂直音调得出新的公式,图形和表格。使用此方法,我们研究了$2ν_r= n $结构共振($ n $是扇区的数量),并为其停止带提供公式和图形。将这些方程与新的曲调的新方程相结合,我们找到了任何值的稳定区域和紧凑型等到环体环体的能量限制。我们与Hadron治疗的IBA C400 Cyclotron的封闭轨道模拟面对新的分析方法。
Existing analytical models for transverse beam dynamics in isochronous cyclotrons are often not valid or not precise for relativistic energies. The main difficulty in developing such models lies in the fact that cross-terms between derivatives of the average magnetic field and the azimuthally varying components cannot be neglected at higher energies. Taking such cross-terms rigorously into account results in an even larger number of terms that need to be included in the equations. In this paper, a method is developed which is relativistic correct and which provides results that are practical and easy to use. We derive new formulas, graphs and tables for the radial and vertical tunes in terms of the the flutter, its radial derivatives, the spiral angle and the relativistic gamma. Using this method, we study the $2ν_r=N$ structural resonance ($N$ is number of sectors) and provide formulas and graphs for its stopband. Combining those equations with the new equation for the verical tune, we find the stability zone and the energy limit of compact isochronous cyclotrons for any value of N. We confront the new analytical method with closed orbit simulations of the IBA C400 cyclotron for hadron therapy.