Role of Polar vs Non-polar Configurations in the Decay of 268Sg* Compound Nucleus Within the Skyrme Energy Density Formalism

R. Mittal, K. Sandhu, M. Sharma
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Abstract

The effect of polar and non-polar configurations is investigated in the decay of 268Sg* compound nucleus formed via spherical projectile (30Si) and prolate deformed target (238U) using the dynamical cluster decay model. The SSK and GSkI skyrme forces are used to investigate the impact of polar and nonpolar (equatorial) configurations on the preformation probability P0 and consequently on the fission cross-sections of 268Sg* nucleus. For non-polar configuration some secondary peaks corresponding to magic shells Z=28 and N=50 are observed, whose magnitude is significantly suppressed for the polar counterpart. The effect of polar and non-polar configurations is further analyzed in reference to barrier lowering parameter ΔVB. The calculated fission cross-section find adequate agreement with experimental data for chosen set of skyrme forces.
在Skyrme能量密度形式下,极性构型与非极性构型在268Sg*化合物核衰变中的作用
利用动力学簇衰变模型研究了由球形抛射体(30Si)和长形靶(238U)形成的268Sg*化合物核的极性和非极性构型对其衰变的影响。用SSK和GSkI的天旋力研究了极性和非极性(赤道)构型对268Sg*核的预形成概率P0和裂变截面的影响。对于非极性构型,我们观察到一些对应于Z=28和N=50的幻壳层的次级峰,其量级在极性构型中被显著抑制。参考降势垒参数ΔVB,进一步分析了极性构型和非极性构型的影响。计算出的裂变截面与所选的一组核力的实验数据吻合得很好。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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