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利用轴向磁化的永磁环制造轴向梯度磁场
引用本文:彭全岭,赵起. 利用轴向磁化的永磁环制造轴向梯度磁场[J]. 中国物理 C, 2003, 27(4): 363-366
作者姓名:彭全岭  赵起
作者单位:[1]中国科学院高能物理研究所,北京100039 [2]平顶山广播电视大学,河南平顶山467000
摘    要:首先叙述了由单个轴向磁化环所产生的磁场,并就两个永磁环所产生的纵向磁场进行了分析.对于两个沿同一方向磁化的永磁体环,沿磁环中心线将会产生一个强度较为均匀的轴向磁场.如果两者的磁化方向相反,则在两磁铁间的区域将产生一个纵向的梯度磁场,其磁场强度介于-B0到+B0之间.设计制造了一个高梯度的轴向磁场,其磁场梯度为47.2Tm,测量结果与计算结果非常一致.文中还讨论了产生变梯度磁场的方法.由于永磁环所产生的磁场和螺线管的磁场较为相似,磁铁外部空间将有较大的漏场,最后还讨论了屏蔽漏场的问题.

关 键 词:轴向磁化的永磁环  轴向梯度磁场  剩磁  镜像磁单元
收稿时间:2002-04-25

Using Axial Magnetized Permanent Rings to Build Axial Gradient Magnetic Field
PENG Quan Ling ZHAO Qi. Using Axial Magnetized Permanent Rings to Build Axial Gradient Magnetic Field[J]. High Energy Physics and Nuclear Physics, 2003, 27(4): 363-366
Authors:PENG Quan Ling ZHAO Qi
Affiliation:PENG Quan Ling 1 ZHAO Qi 2 1
Abstract:Axial field produced by an axially magnetized permanent ring was studied. For two permanent magnet rings, if they are magnetized in the same direction, a nearly uniform axial field can be produced; if they are magnetized in opposite direction, an axial gradient field can be produced in the region between the two permanent rings, with the field strength changing from - B 0 to B 0. A high gradient axial magnetic field has been built by using two axially magnetized permanent rings, the measured field results agree with the PANDIRA calculation very well. It is desirable that the field gradient can be varied to match various requirements. A method to produce the variable gradient field is presented. Axial gradient field can also be used as a beam focusing facility for linear accelerator if axial periodic field can be produced. Its magnetic field is similar to that of a solenoid, in which, large stray field will leak to the outside environment. A method for shielding the outside stray field is discussed.
Keywords:axial magnetized permanent ring   axial gradient field   remnant field   imaged permanent element  
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