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Nuclear structure effects in quasifission – understanding the formation of the heaviest elements

机译:核结构在Quasifision中的影响 - 了解最重的元素的形成

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Quasifission is an important process suppressing the fusion of two heavy nuclei in reactions used to create superheavy elements. Quasifission results in rapid separation of the dinuclear system initially formed at contact. Achieving reliable a priori prediction of quasifission probabilities is a very diffcult problem. Through measurements with projectiles from C to Ni, the Australian National University’s Heavy Ion Accelerator Facility and CUBE spectrometer have been used to map out mass-angle distributions (MAD) - the fission mass-ratio as a function of centre-of-mass angle. These provide information on quasifission dynamics in the least modeldependent way. Average quasifission time-scales have been extracted, and compared with TDHF calculations of the collisions, with good agreement being found. With the baseline information from the survey of experimental MAD, strong influences of the nuclear structure of the projectile and target nuclei can be clearly determined.
机译:Quasifission是抑制用于产生过度元素的反应中两种重核的融合的重要过程。 Quasifissife导致最初在接触处形成的二核系统的快速分离。实现可靠的Quasififification概率预测是一个非常差异的问题。通过从C到NI的射弹测量,澳大利亚国家大学的重离子加速器设施和立方体光谱仪已经用于映射大分角分布(MAD) - 裂变质量比作为质量角度的函数。这些提供了以最少依赖的方式提供有关Quasifification Dynamics的信息。已经提取了平均Quasififififififififififififics尺度,并与碰撞的TDHF计算进行了比较,并找到了良好的协议。通过来自实验性疯狂调查的基线信息,可以明确确定射弹和靶核的核结构对核结构的强烈影响。

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