Llacer J, Schmidt J B, Tobias C A
Engineering Division, Lawrence Berkeley Laboratory, California 94720.
Med Phys. 1990 Mar-Apr;17(2):151-7. doi: 10.1118/1.596536.
Measurements of a 670-MeV/amu 20Ne beam at the Lawrence Berkeley Laboratory Bevalac heavy-ion accelerator with various thicknesses of water absorber were obtained with the BERKLET. The BERKLET, a simple three-stage solid-state telescope detector, has been described previously. This instrument measures the linear energy transfer (LET) and residual energy of particles, allows the identification of the particle's charge, and provides a means of obtaining LET and energy statistics for the beam, separated by particle charge. The track and dose averaged LET dependence on the amount of water absorber was determined for each species of fragment in the beam. Large numbers of low-LET particles in the fragmented beam were detected. The results of the analysis are presented followed by a discussion of the effects of multiple scattering and secondary fragmentation on the measurements. A brief discussion of the implications of the BERKLET measurements for radiobiology is also presented.
利用伯克利实验室重离子加速器(BERKLET),对劳伦斯伯克利国家实验室贝伐粒子加速器产生的能量为670兆电子伏特每核子的20氖离子束,在不同厚度的吸水材料下进行了测量。BERKLET是一种简单的三级固态望远镜探测器,此前已有相关描述。该仪器可测量粒子的线能量转移(LET)和剩余能量,能识别粒子电荷,并提供一种获取按粒子电荷分离的束流LET和能量统计数据的方法。针对束流中每种碎片,确定了径迹和剂量平均LET对吸水材料量的依赖性。在碎片束流中检测到大量低LET粒子。给出了分析结果,随后讨论了多次散射和二次碎裂对测量的影响。还简要讨论了BERKLET测量结果对放射生物学的意义。