首页> 外文会议>Tours Symposium on Nuclear Physics >Calculation of high-dimensional fission-fusion potential-energy surfaces in the SHE region
【24h】

Calculation of high-dimensional fission-fusion potential-energy surfaces in the SHE region

机译:她所在地区高维裂变 - 融合潜在 - 能量表面的计算

获取原文

摘要

We calculate in a macroscopic-microscopic model fission-fusion potential-energy surfaces relevant to the analysis of heavy-ion reactions employed to form heavy-element evaporation residues. We study these multidimensional potential-energy surfaces both inside and outside the touching point.Inside the point of contact we define the potential on a multi-million-point grid in 5D deformation space where elongation, merging projectile and target spheroidal shapes, neck radius and projectile/target mass asymmetry are independent shape variables. The same deformation space and the corresponding potential-energy surface also describe the shape evolution from the nuclear ground-state to separating fragments in fission, and the fast-fission trajectories in incomplete fusion.For separated nuclei we study the macroscopic-microscopic potential energy, that is the "collision surface" between a spheroidally deformed target and a spheroidally deformed projectile as a function of three coordinates which are: the relative location of the projectile center-of-mass with respect to the target center-of-mass and the spheroidal deformations of the target and the projectile. We limit our study to the most favorable relative positions of target and projectile, namely that the symmetry axes of the target and projectile are collinear.
机译:我们在宏观 - 微观模型裂变 - 融合电位 - 能量表面上,与用于形成重点蒸发残基的重离子反应分析。我们研究了触摸点内外的这些多维潜在能量表面。在5D变形空间中,我们在5D变形空间中定义了多百万点网格上的潜力,其中伸长,合并射弹和靶球形,颈部半径和弹丸/目标质量不对称是独立的形状变量。相同的变形空间和相应的电位 - 能量表面也描述了核接地状态的形状演变与裂变中的碎片分离,并且在不完全融合中的快速裂变轨迹。对于分离的细胞核,我们研究了宏观 - 微观潜在能量,这是球形变形靶和球形变形射弹之间的“碰撞表面”,作为三个坐标的函数,这是:射弹中心相对于目标质量中心和球体的相对位置目标和射弹的变形。我们将我们的研究限制在目标和弹丸最有利的相对位置,即目标和射弹的对称轴是线性的。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号