Conceptional design of the laser ion source based hadrontherapy facility

  • A laser ion source (LIS), which can provide a carbon beam with highly stripped state (C6+) and high intensity (several tens mA), would significantly change the overall design of the hadrontherapy facility. The proposed LIS based hadrontherapy facility has the advantages of short linac length, simple injection scheme, and small synchrotron size. With the experience from the DPIS and HITFiL projects that have been conducted in IMP, a conceptional design of the LIS based hadrontherapy facility will be presented, with special attention given to APF type IH DTL design and simulation.
      PCAS:
  • 加载中
  • [1] XIAO Guo-Qing, ZHANG Hong, LI Qiang. Nuclear Physics Review, 2007, 24(2): 85 (in Chinese)[2] XIAO Guo-Qing, ZHANG Hong, LI Qiang. Chinese Physics C (HEP NP), 2008, 32(2): 8[3] SONG Ming-Tao. Hadrontherapy Facility in Lanzhou. The 7th National Medical Accelerator Conference. Qingdao: Chinese Journal of Medical Device, 2006. 28 (in Chinese)[4] SHA Shan et al. Review of Scientific Instruments, 2012, 83(2): 02B303[5] ZHANG Zhou-Li et al. Nuclear Instrum. Methods A, 2008, 197: 200[6] Wangler T P. RF Linear Accelerators. Hoboken, New Jersey: Wiley-VCH, 2008. 207[7] CHENG Wen-Hao, Gluckstern R L, Hiromi Okamoto. Synchrobetatron Coupling Effects in Alternating Phase Focusing. Particle Accelerator Conference 1993. Washington D.C.: IEEE, 1993. 221[8] Kapin V V, Nesterovich A V. Feasibility of Alternative Phase Focusing for a Chain of Short Independently-Phased Resonators. Proceedings of RuPAC 2010. Protvino: JACOW, 2010. 322[9] Beley A S et al. An Alternating Phase Focusing Channel for Low Energy Proton Therapy. Proceedings of the 7th European Particle Conference. Vienna: Springer, 2000. 1477[10] Bomko V A et al. Problems of Atomic Science and Technology, 2004, 153: 154[11] Minaev S, Ratzinger U, Schlitt B. APF or KONUS Drift Tube Structures for Medical Synchrotron Injectors a Comparison. Particle Accelerator Conference 1999. New York: IEEE, 1999, 3555[12] Iwata Y et al. Nuclear Instrum. Methods A, 2006, 685: 696[13] Yuri Batygin. BEAMPATH User Manual. LANL: LA-UR-12-26195, 2012. 1
  • 加载中

Get Citation
XIE Xiu-Cui, SONG Ming-Tao and ZHANG Xiao-Hu. Conceptional design of the laser ion source based hadrontherapy facility[J]. Chinese Physics C, 2014, 38(4): 047006. doi: 10.1088/1674-1137/38/4/047006
XIE Xiu-Cui, SONG Ming-Tao and ZHANG Xiao-Hu. Conceptional design of the laser ion source based hadrontherapy facility[J]. Chinese Physics C, 2014, 38(4): 047006.  doi: 10.1088/1674-1137/38/4/047006 shu
Milestone
Received: 2013-06-08
Revised: 1900-01-01
Article Metric

Article Views(2875)
PDF Downloads(205)
Cited by(0)
Policy on re-use
To reuse of subscription content published by CPC, the users need to request permission from CPC, unless the content was published under an Open Access license which automatically permits that type of reuse.
通讯作者: 陈斌, bchen63@163.com
  • 1. 

    沈阳化工大学材料科学与工程学院 沈阳 110142

  1. 本站搜索
  2. 百度学术搜索
  3. 万方数据库搜索
  4. CNKI搜索

Email This Article

Title:
Email:

Conceptional design of the laser ion source based hadrontherapy facility

    Corresponding author: XIE Xiu-Cui,

Abstract: A laser ion source (LIS), which can provide a carbon beam with highly stripped state (C6+) and high intensity (several tens mA), would significantly change the overall design of the hadrontherapy facility. The proposed LIS based hadrontherapy facility has the advantages of short linac length, simple injection scheme, and small synchrotron size. With the experience from the DPIS and HITFiL projects that have been conducted in IMP, a conceptional design of the LIS based hadrontherapy facility will be presented, with special attention given to APF type IH DTL design and simulation.

    HTML

Reference (1)

目录

/

DownLoad:  Full-Size Img  PowerPoint
Return
Return