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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research >Panofsky magnet for the beam extraction from the synchrotron using a fast Q.-magnet and RF-knockout
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Panofsky magnet for the beam extraction from the synchrotron using a fast Q.-magnet and RF-knockout

机译:潘诺夫斯基磁铁,用于通过快速Q磁铁和RF敲除从同步加速器中提取光束

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摘要

The fast control of the beam spill extracted from a synchrotron is a key function for the spot scanning irradiation in cancer therapy application. The authors propose an extraction method which uses the quadruple field of fast response, as well as the RF-knockout. A Panofsky magnet was developed as a quadruple magnet, with a frequency response of around 10 kHz. The Panofsky magnet has a rectangular beam aperture and plate coils attached to the pole face. A model magnet has been manufactured with ferrite, and static and dynamic magnetic fields were measured. From the measurement we observed that the effects of eddy current in the plate coils were large and the uniformity of the magnetic field gradient in the beam aperture was worse than ±5% with a plate thickness of 0.02 cm and a frequency of current of 10 kHz. For the future, in a detailed design the eddy current effects have to be taken into account.
机译:从同步加速器提取的光束溢出的快速控制是癌症治疗应用中点扫描辐射的关键功能。作者提出了一种提取方法,该方法使用快速响应的四重字段以及RF敲除。 Panofsky磁铁被开发为四重磁铁,其频率响应约为10 kHz。 Panofsky磁铁具有一个矩形束孔和连接到磁极面的平板线圈。用铁氧体制造了模型磁体,并测量了静态和动态磁场。从测量中我们观察到,板厚为0.02 cm,电流频率为10 kHz时,板式线圈中的涡流影响较大,并且束孔中磁场梯度的均匀性差于±5%。 。对于未来,在详细设计中必须考虑涡流效应。

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