Recording in medical application of ionizing radiation-part 1 : therapy with electron accelerators as well as x-ray and gamma-ray therapy systems 电离辐射医用记录.第1部分:带电子加速器的治疗设备及
Medical electrical equipment-part 2-1 : particular requirements for the safety of electron accelerators in the range 1 mev to 50 mev 医用电气设备.第2-1部分:在1mev至50mev范围的电子加速器安全的特殊要求
Medical electrical equipment-medical electron accelerators-functional performance characteristics iec 60976 : 1989 a1 : 2000; german version en 60976 : 1999 a1 : 2000 医用电气设备.医用电子加速器.功能特性
Medical electrical equipment; medical electron accelerators in the range 1 mev to 50 mev; guidelines for functional performance characteristics 医疗电气设备.在1-50mev范围内的医疗用电子加速器.功能特性指南
Medical electrical equipment-part 2-1 : particular requirements for the safety of electron accelerator in the range of 1 mev to 50 mev 医疗用电气设备.第2-1部分:1-50mev范围内电子加速器安全性的特殊要求
Medical electrical equipment-part 2-1 : particular requirements for the safety of electron accelerators in the range 1 mev to 50 mev; amendment 1 医疗电气设备.第2-1部分:1-50mev范围内医用电子加速器安全的特殊要求.修改件1
Medical electrical equipment-medical electron accelerators in the range 1 mev to 50 mev-guidelines for functional performance characteristics; amendment 1 医疗电气设备.在1-50mev范围内的医疗用电子加速器.功能特性指南.修改件1
Medical electrical equipment . particular requirements for performance . methods of declaring functional performance characteristics of medical electron accelerators in the range 1 mev to 50 mev 医用电气设备.第3部分:性能的特殊要求.第1节:1mev至50mev范围内的医用电子加速器性能特性表示方法
The wakefield excited by an ultrashort and ultrahigh laser pulse propagating through tenuous plasma can accelerate electrons to extreme high energy . this can be used as a mechanism to design minitype electron accelerator . this thesis is devoted to studying those issues relevant to the wakefield accelerator, namely the laser wakefield accelerator ( lwfa ), laser wakefield accelerator driven by multiple pulses ( mp-lwfa ), plasma beat wave accel-erator ( pbwa ) and self-modulated laser wakefield accelerator ( sm-lwfa ) 本文的目的是:利用粒子模拟方法,研究和比较激光尾流场加速电子的四种主要方案:短脉冲激光尾流场加速(lwfa)、多脉冲激光尾流场加速(mp-lwfa)、拍频束尾流场加速(pbwa)、自调制激光尾流场加速(sm-lwfa)。