MIRKO — an interactive program for beam lines and synchrotrons

MIRKO — an interactive program for beam lines and synchrotrons
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MIRKO — 光束线和同步加速器的交互式程序

DOI:
10.1007/3540139095_102
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发表时间:
1984
期刊:
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影响因子:
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通讯作者:
B. Franczak
B. Franczak
中科院分区:
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文献类型:
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作者:
B. Franczak

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束线和同步加速器的离子光学设计通常不是通过运行一个程序来完成的。它需要多次迭代计算、检查结果和修改输入数据。在大多数情况下,一阶设计必须遵循高阶效应的研究,即色差和几何像差或共振现象。交互式计算机程序 MIRKO 从终端操作并具有命令结构,使用户能够编辑数据、执行计算并以任何所需顺序在终端上获得 alpha 或图形输出。通过图形,人们可以比仅通过数字更快地识别光学系统的属性。因此,可以根据计算结果轻松修改输入数据,而无需停止和重新启动程序。高阶效应有时会影响一阶设计。因此,MIRKO 中包含了粒子跟踪功能以及同步加速器阻带宽度的计算。因此,基于光学系统的完全相同的数据以及不同特征之间快速切换的可能性,可以在一次会话中使用一个程序来研究多种现象。
The ion-optical design of beam lines and synchrotrons is usually not done by a single run of one program. It takes many iterations of calculation, examination of results, and modification of input data. In most cases the first order design has to be followed by the investigation of higher order effects, ie chromatic and geometrical aberrations or resonance phenomena.The interactive computer program MIRKO is operated from a terminal and has a command structure, which enables the user to edit data, perform calculations, and to obtain alpha or graphics output on the terminal in any desired sequence. With graphics one can recognize the properties of an optical system much faster than with numbers only. Thus modifications of input data depending on the results of calculations can be made easily without stopping and restarting the program. Higher order effects can sometimes influence the first order design. Therefore, particle tracking capability was included in MIRKO as well as the calculation of stop band widths for synchrotrons. Consequently a large variety of phenomena can be studied with one program in one session based upon exactly the same data for the optical system and the possibility of fast switching between the different features.