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ATPF–a dedicated proton therapy facility

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【作者】 方守贤关遐令唐靖宇陈沅邓昌东董海义傅世年焦毅舒航欧阳华甫邱静石才土孙虹韦杰杨梅张旌

【Author】 FANG Shou-Xian1) GUAN Xia-Ling TANG Jing-Yu CHEN Yuan DENG Chang-Dong DONG Hai-Yi FU Shi-Nian JIAO Yi SHU Hang OUYANG Hua-Fu QIU Jing SHI Cai-Tu SUN Hong WEI Jie YANG Mei ZHANG Jing Institute of High Energy Physics, CAS, Beijing 100049, China

【机构】 Institute of High Energy Physics, CAS

【摘要】 A proton therapy facility based on a linac injector and a slow-cycling synchrotron is proposed. To obtain good treatments for different cancer types, both the spot scanning method and the double-scattering method are adopted in the facility, whereas the nozzles include both gantry and fixed beam types. The proton accelerator chain includes a synchrotron of 250 MeV in maximum energy, an injector of 7 MeV consisting of an RFQ and a DTL linac, with a repetition rate of 0.5 Hz. The slow extraction using the third-order resonance and together with the RFKO method is considered to be a good method to obtain a stable and more-or-less homogenous beam spill. To benefit the spot scanning method, the extraction energy can be as many as about 200 between 60 MeV and 230 MeV. A new method – the emittance balancing technique of using a solenoid or a quadrupole rotator is proposed to solve the problem of unequal emittance in the two transverse planes with a beam slowly extracted from a synchrotron. The facility has been designed to keep the potential to be upgraded to include the carbon therapy in the future.

【Abstract】 A proton therapy facility based on a linac injector and a slow-cycling synchrotron is proposed. To obtain good treatments for different cancer types, both the spot scanning method and the double-scattering method are adopted in the facility, whereas the nozzles include both gantry and fixed beam types. The proton accelerator chain includes a synchrotron of 250 MeV in maximum energy, an injector of 7 MeV consisting of an RFQ and a DTL linac, with a repetition rate of 0.5 Hz. The slow extraction using the third-order resonance and together with the RFKO method is considered to be a good method to obtain a stable and more-or-less homogenous beam spill. To benefit the spot scanning method, the extraction energy can be as many as about 200 between 60 MeV and 230 MeV. A new method – the emittance balancing technique of using a solenoid or a quadrupole rotator is proposed to solve the problem of unequal emittance in the two transverse planes with a beam slowly extracted from a synchrotron. The facility has been designed to keep the potential to be upgraded to include the carbon therapy in the future.

  • 【文献出处】 中国物理C ,Chinese Physics C , 编辑部邮箱 ,2010年03期
  • 【分类号】O572.211
  • 【被引频次】6
  • 【下载频次】80
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