论文标题

稀有异位束时代的光电位

Optical potentials for the rare-isotope beam era

论文作者

Hebborn, C., Nunes, F. M., Potel, G., Dickhoff, W. H., Holt, J. W., Atkinson, M. C., Baker, R. B., Barbieri, C., Blanchon, G., Burrows, M., Capote, R., Danielewicz, P., Dupuis, M., Elster, Ch., Escher, J. E., Hlophe, L., Idini, A., Jayatissa, H., Kay, B. P., Kravvaris, K., Manfredi, J. J., Mercenne, A., Morillon, B., Perdikakis, G., Pruitt, C. D., Sargsyan, G. H., Thompson, I. J., Vorabbi, M., Whitehead, T. R.

论文摘要

我们回顾了最近的进步,并激发了在核子弹性散射和反应横截面的理论分析中广泛使用的核光势发展的需求。在核图的区域远离稳定性的区域,该区域代表了未来十年的核科学领域,并且将在全球新的稀有异位束机构进行探测,有针对性的需要量化和减少理论反应模型的不确定性,尤其是在核光学电位方面。我们首先描述了对涉及短寿命同位素的核反应的改进描述的主要物理动机,重点是其对医学,能源和安全性的基本科学发现和应用的好处。然后,我们概述了当今使用的各种方法,以从现象学,显微镜和AB启动方法开始,尤其强调了每种方法的优势和劣势。然后,我们讨论了公共可用的工具和资源,以促进该领域最新进展到从业者的传播。最后,我们为该领域提供了一系列开放的挑战和建议,以促进稀有 - 同位素束时代核反应研究的基本科学目标。

We review recent progress and motivate the need for further developments in nuclear optical potentials that are widely used in the theoretical analysis of nucleon elastic scattering and reaction cross sections. In regions of the nuclear chart away from stability, which represent a frontier in nuclear science over the coming decade and which will be probed at new rare-isotope beam facilities worldwide, there is a targeted need to quantify and reduce theoretical reaction model uncertainties, especially with respect to nuclear optical potentials. We first describe the primary physics motivations for an improved description of nuclear reactions involving short-lived isotopes, focusing on its benefits for fundamental science discoveries and applications to medicine, energy, and security. We then outline the various methods in use today to build optical potentials starting from phenomenological, microscopic, and ab initio methods, highlighting in particular the strengths and weaknesses of each approach. We then discuss publicly-available tools and resources facilitating the propagation of recent progresses in the field to practitioners. Finally, we provide a set of open challenges and recommendations for the field to advance the fundamental science goals of nuclear reaction studies in the rare-isotope beam era.

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