目标的四极和十六极变形对射弹的影响

IF 1.5 4区 物理与天体物理 Q2 PHYSICS, MULTIDISCIPLINARY
Narayanaswamy Manjunatha, Holaly Chandrashekara Shastry Manjunatha, Nagaraj Sowmya, Krishnachari Nagarathnamma Sridhar, Padhmaghatta Somashekaraih Prabhavathi
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引用次数: 0

摘要

为了研究变形量对重离子聚变反应的影响,我们考虑了目标变形量变化而射弹变形量不变的反应。利用先进的统计模型,我们研究了 4He+233-238U、48Ca+204-208Pb 和 48Ca+240-244Pu 的聚变反应。考虑了四极和十六极变形对库仑势的影响。所研究的聚变截面和蒸发残留截面与实验结果十分吻合。因此,对 He+U、Ca+Pb 和 Ca+Pu 等聚变过程的深入研究表明,四极子变形如何同时增加聚变和蒸发截面。此外,要理解靶核的四极和十六极变形的重离子相互作用的许多方面,还需要在理论和实践方面进行大量的变形研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect of Quadrupole and Hexadecapole Deformations of Target on Projectile
To investigate the effect of the magnitude of deformations on heavy-ion fusion reactions, we have considered reactions in such a way that the deformations of the target varied whereas that of the projectile remained the same. Using an advanced statistical model, we investigated fusion reactions of 4He+233–238U, 48Ca+204–208Pb, and 48Ca+240–244Pu. The influence of quadrupole and hexadecapole deformations on Coulomb potential was considered. The fusion cross-sections and evaporation residue cross-sections studied were in good accord with that of the experiments. As a consequence, a thorough examination of fusion processes like He+U, Ca+Pb, and Ca+Pu demonstrates how quadrupole deformation simultaneously increases fusion and evaporation cross-sections. σER decreases with increasing hexadecapole deformation. Also, to comprehend the many facets of heavy-ion interactions of quadrupole and hexadecapole deformations of target nuclei, substantial deformation research in both theoretical and practical aspects is required.
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来源期刊
CiteScore
3.40
自引率
17.60%
发文量
325
审稿时长
3 months
期刊介绍: The papers published in JPSJ should treat fundamental and novel problems of physics scientifically and logically, and contribute to the development in the understanding of physics. The concrete objects are listed below. Subjects Covered JPSJ covers all the fields of physics including (but not restricted to) Elementary particles and fields Nuclear physics Atomic and Molecular Physics Fluid Dynamics Plasma physics Physics of Condensed Matter Metal, Superconductor, Semiconductor, Magnetic Materials, Dielectric Materials Physics of Nanoscale Materials Optics and Quantum Electronics Physics of Complex Systems Mathematical Physics Chemical physics Biophysics Geophysics Astrophysics.
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