bending magnet
- 网络偏转磁铁;弯转磁铁;向磁铁
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Development of Cast form of Bending Magnet for a Storage Ring
储存环弯转磁铁的铸造成型研制
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Some Considerations in Prefabrication of Bending Magnet for Electron Storage Ring
研制电子储存环弯转磁铁的若干问题
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The transfer matrix of bending magnet in six dimensional phase space
偏转磁铁的六维传输矩阵
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Physical design of a 270 ° double achromatic bending magnet
双消色散270°偏转磁铁的物理设计
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270 ° Bending magnet system for 14 MeV medical electron LINAC
14MeV医用电子直线加速器上270°偏转磁铁系统
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Beam transport characteristics of the 270 ° doubly achromatic bending magnet
270°消色差偏转磁铁束流传输特性
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The eddy-current effects of a bending magnet on an electron storage ring during slow acceleration
电子储存环慢加速过程中弯转磁铁的涡流效应
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The finite element analysis of eddy-current fields of a C-type solid yoke bending magnet
C型块状磁铁涡流场的有限元分析
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An analytic solution to the move equation of the particle in a bending magnet with constant strong sextupole is presented in detail .
本文给出了粒子在具有较强常六极矩弯转磁铁中运动方程的一个解析解。
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The chromatic property of a 270 ° bending magnet has been studied . Formulas for calculations of a doubly achromatic magnet are derived .
本文推导出270°消色差偏转磁铁束流传输特性的计算公式;
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The aim of the main ring is to accelerate the heavy ion to high energy . For synchronization between bending magnet field and RF frequency during acceleration process , two beam feedback loops for the frequency control are needed .
在加速过程中,为了保证束流的谐振加速,须准备2个束流反馈环(相位反馈环和束流径向位置反馈环)来保证主导磁场与高频频率的同步。