Townsend L W, Tripathi R K, Cucinotta F A, Bagga R
Department of Nuclear Engineering, The University of Tennessee, Knoxville 37996-2300, USA.
Adv Space Res. 1998;21(12):1773-6. doi: 10.1016/s0273-1177(98)00064-7.
The fragmenting of high energy, heavy ions by hydrogen targets is an important physical process in several areas of space radiation protection research. Quantum mechanical, optical model methods for calculating cross sections for particle fragmentation by hydrogen have been developed from a modified abrasion-ablation collision formalism. The abrasion stage is treated as a knockout process which leaves the residual prefragment in an excited state. In the ablation stage the prefragment excitation to produce the final fragment. The prefragment excitation energies are estimated from a combination of liquid drop model considerations and frictional-spectator interaction processes. Estimates of elemental and isotopic production cross sections are in good agreement with published cross section measurements.
高能重离子与氢靶的碎裂是空间辐射防护研究多个领域中的一个重要物理过程。基于改进的擦除-烧蚀碰撞形式理论,已开发出用于计算氢引发的粒子碎裂截面的量子力学光学模型方法。擦除阶段被视为一个敲出过程,使剩余的预碎片处于激发态。在烧蚀阶段,预碎片被激发以产生最终碎片。预碎片激发能通过液滴模型考虑因素和摩擦旁观相互作用过程相结合来估算。元素和同位素产生截面的估算值与已发表的截面测量结果吻合良好。