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Characteristics of High Electron Beam Generation and Dose Distribution in Laser Wakefield Accelerator for Cancer Treatment

机译:激光韦克菲尔德加速器高电子束生成和剂量分布的特点

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A laser wakefield accelerator (LWFA) can accelerate electrons using the interaction between high-intensity laser pulses and plasma. We developed and studied a small cancer treatment device using a 16-TW ultra-short high power laser based LWFA system and conducted further research to build a high-efficiency LWFA using a specific plasma density structure. The optimal acceleration condition was confirmed using a two-dimensional (2D) particle-in-cell (PIC) simulation, using the EPOCH 2D code. From the plasma density up-ramp structure, an electron beam energy of 210 MeV was obtained, which is 1.5 times higher than that obtained from the uniform plasma distribution. In addition, an electron beam energy of 70 MeV was obtained by ionization injection from a gas mixture of helium containing 10% nitrogen. A Gafchromic film was used to measure the three-dimensional dose distribution of the beam. The measured dose distributions are similar to those of high-energy electron beams with a narrow pencil-beam distribution. The dose distribution along the depth is similar to that obtained using the GEANT4 code, which considers the energy distribution of the electron beam. As the electron beam energy increases, the penetration depth is expected to increase, which suggests the possibility of developing an effective cancer treatment device.
机译:激光唤醒促进剂(LWFA)可以使用高强度激光脉冲和等离子体之间的相互作用加速电子。我们使用基于16-TW超短高功率激光的LWFA系统开发并研究了小型癌症处理装置,并进行了进一步的研究,以使用特定的等离子体密度结构构建高效LWFA。使用epoch 2d代码,使用二维(2d)粒子粒子(PIC)仿真确认最佳加速条件。从等离子体密度上升斜坡结构,获得210meV的电子束能量比从均匀等离子体分布所获得的1.5倍。另外,通过从含有10℃的氦气的气体混合物的电离注射获得70mEV的电子束能量。使用Gafchromic膜测量光束的三维剂量分布。测量剂量分布类似于具有窄铅笔束分布的高能电子束的剂量。沿着深度的剂量分布类似于使用GEANT4码获得的剂量分布,其考虑电子束的能量分布。随着电子束能量的增加,预期渗透深度会增加,这表明了开发有效的癌症治疗装置的可能性。

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