Title :
Electromagnetic simulation of linear proton acceletrator structures using dielectric wall acceletrators
Author :
Nelson, S.D. ; Poole, B.R. ; Caporaso, G.J.
Author_Institution :
Lawrence Livermore Nat. Lab., Livermore
Abstract :
Proton accelerator structures for medical applications using Dielectric Wall Accelerator (DWA) technology allow for the utilization of high electric field gradients on the order of 100 MV/m to accelerate the proton bunch. Medical applications involving cancer therapy treatment usually desire short bunch lengths on the order of hundreds of picoseconds in order to limit the extent of the energy deposited in the tumor site (in 3D space, time, and deposited proton charge). Electromagnetic simulations of the DWA structure, in combination with injections of proton bunches have been performed using 3D finite difference codes in combination with particle pushing codes. Electromagnetic simulations of DWA structures includes these effects and also include the details of the switch configuration and how that switch time affects the electric field pulse which accelerates the particle beam.
Keywords :
cancer; finite difference methods; linear accelerators; particle beam bunching; particle beam injection; proton accelerators; proton beams; radiation therapy; tumours; 3D finite difference codes; DWA structure; cancer therapy treatment; dielectric wall accelerators; electric field gradients; electromagnetic simulations; linear accelerator; medical applications; particle beam injections; proton accelerator; proton bunch; tumor site; Acceleration; Biomedical equipment; Cancer; Dielectrics; Medical services; Medical simulation; Medical treatment; Neoplasms; Proton accelerators; Switches;
Conference_Titel :
Particle Accelerator Conference, 2007. PAC. IEEE
Conference_Location :
Albuquerque, NM
Print_ISBN :
978-1-4244-0916-7
DOI :
10.1109/PAC.2007.4440897