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Nuclear Fission: : A Review of Experimental Advances and Phenomenology

机译:核裂变:实验进展与现象学的回顾

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摘要

In the last two decades, through technological, experimental and theoretical advances, the situation in experimental fission studies has changed dramatically. With the use of advanced production and detection techniques both much more detailed and precise information can now be obtained for the traditional regions of fission research and, crucially, new regions of nuclei have become routinely accessible for fission studies. This work first of all reviews the recent developments in experimental fission techniques, in particular the resurgence of transfer-induced fission reactions with light and heavy ions, the emerging use of inverse-kinematic approaches, both at Coulomb and relativistic energies, and of fission studies with radioactive beams. The emphasis on the fission-fragment mass and charge distributions will be made in this work, though some of the other fission observables, such as prompt neutron and γ-ray emission will also be reviewed. A particular attention will be given to the low-energy fission in the so far scarcely explored nuclei in the very neutron-deficient lead region. They recently became the focus for several complementary experimental studies, such as β-delayed fission with radioactive beams at ISOLDE(CERN), Coulex-induced fission of relativistic secondary beams at FRS(GSI), and several prompt fusion-fission studies. The synergy of these approaches allows a unique insight in the new region of asymmetric fission around <sup>180</sup>Hg, recently discovered at ISOLDE. Recent extensive theoretical efforts in this region will also be outlined. The unprecedented high-quality data for fission fragments, completely identified in <i>Z</i> and <i>A</i>, by means of reactions in inverse kinematics at FRS(GSI) and VAMOS(GANIL) will be also reviewed. These experiments explored an extended range of mercury-to-californium elements, spanning from the neutron-deficient to neutron-rich nuclides, and covering both asymmetric, symmetric and transitional fission regions. Some aspects of heavy-ion induced fusion-fission and quasifission reactions will be also discussed, which reveal their dynamical features, such as the fission time scale. The crucial role of the multi-chance fission, probed by means of multinucleon-transfer induced fission reactions, will be highlighted. The review will conclude with the discussion of the new experimental fission facilities which are presently being brought into operation, along with promising 'next-generation' fission approaches, which might become available within the next decade.
机译:在过去的二十年中,通过技术,实验和理论上的进步,实验裂变研究的情况发生了巨大变化。通过使用先进的生产和探测技术,现在可以获得有关裂变研究传统区域的更加详细和精确的信息,而且至关重要的是,新的核子区域已成为裂变研究的常规途径。 这项工作首先回顾了实验性裂变技术的最新发展,特别是转移引起的轻离子和重离子裂变反应的复兴,库仑和相对论能量的逆运动学方法的新兴应用以及裂变研究带有放射性束。 这项工作将重点介绍裂变碎片的质量和电荷分布,尽管还将审查其他一些裂变观测结果,例如中子迅速发射和γ射线发射。 将特别关注中子不足的铅区中迄今尚未探索的原子核中的低能裂变。最近,它们成为几个补充实验研究的焦点,例如ISOLDE(CERN)的放射性束的β延迟裂变,FRS(GSI)的库勒克斯诱发的相对论性次束裂变,以及一些快速的聚变裂变研究。这些方法的协同作用使人们对ISOLDE最近发现的围绕 180 Hg的不对称裂变的新区域有了独特的认识。也将概述该地区最近的广泛理论努力。 通过FRS(GSI)和VAMOS(GANIL)的逆运动学反应,在 Z A 中完全识别的裂变碎片的前所未有的高质量数据将是还审查了。这些实验探索了从汞缺乏到富中子核素的广泛范围的汞到-元素,并涵盖了不对称,对称和过渡裂变区域。 还讨论了重离子诱导的裂变和拟裂变反应的某些方面,揭示了它们的动力学特征,如裂变时间尺度。将强调通过多核子转移诱导的裂变反应探究的多机会裂变的关键作用。 审查将以对目前正在运行的新实验裂变设施以及有前途的“下一代”裂变方法的讨论作为结束,该裂变方法可能在未来十年内使用。

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