首页> 外文期刊>Nature >No enhancement of fusion probability by the neutron halo of He-6
【24h】

No enhancement of fusion probability by the neutron halo of He-6

机译:He-6的中子晕不增强聚变概率

获取原文
获取原文并翻译 | 示例
       

摘要

Quantum tunnelling through a potential barrier ( such as occurs in nuclear fusion) is very sensitive to the detailed structure of the system and its intrinsic degrees of freedom(1,2). A strong increase of the fusion probability has been observed for heavy deformed nuclei(3). In light exotic nuclei such as He-6, Li-11 and Be-11 ( termed 'halo' nuclei(4)), the neutron matter extends much further than the usual nuclear interaction scale. However, understanding the effect of the neutron halo on fusion has been controversial - it could induce a large enhancement of fusion(5), but alternatively the weak binding energy of the nuclei could inhibit the process(6). Other reaction channels known as direct processes ( usually negligible for ordinary nuclei) are also important: for example, a fragment of the halo nucleus could transfer to the target nucleus through a diminished potential barrier. Here we study the reactions of the halo nucleus He-6 with a U-238 target, at energies near the fusion barrier. Most of these reactions lead to fission of the system, which we use as an experimental signature to identify the contribution of the fusion and transfer channels to the total cross-section. At energies below the fusion barrier, we find no evidence for a substantial enhancement of fusion. Rather, the ( large) fission yield is due to a two-neutron transfer reaction, with other direct processes possibly also involved.
机译:穿过势垒(例如发生在核聚变中)的量子隧穿对系统的详细结构及其固有自由度非常敏感(1,2)。对于重变形核,已经观察到融合概率的强烈增加(3)。在诸如He-6,Li-11和Be-11之类的轻外来核中(称为“晕”核(4)),中子物质的扩展范围比通常的核相互作用规模要大得多。然而,了解中子晕对聚变的影响一直存在争议-它可能引起聚变大幅度增强(5),但另一方面,核的弱结合能可能会抑制该过程(6)。其他被称为直接过程的反应通道(通常对于普通原子核而言可忽略不计)也很重要:例如,晕核的碎片可能会通过减小的势垒转移到目标核。在这里,我们研究了聚变势垒附近能量处的He-6原子核He-6与U-238的反应。这些反应大多数会导致系统分裂,我们将其用作实验特征来确定融合和传输通道对总横截面的贡献。在聚变势垒以下的能量下,我们没有发现任何实质性增强聚变的证据。相反,(大)裂变产率是由于两中子转移反应引起的,还可能涉及其他直接过程。

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