首页> 外文期刊>Progress of Theoretical Physics >Three- and four-body cluster models of hypernuclei using the G-matrix Lambda N interaction - Be-9(Lambda), C-13(Lambda), He-6(Lambda Lambda) and Be-10(Lambda Lambda)
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Three- and four-body cluster models of hypernuclei using the G-matrix Lambda N interaction - Be-9(Lambda), C-13(Lambda), He-6(Lambda Lambda) and Be-10(Lambda Lambda)

机译:利用G矩阵Lambda N相互作用的超核三体和四体簇模型-Be-9(Lambda),C-13(Lambda),He-6(Lambda Lambda)和Be-10(Lambda Lambda)

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摘要

The structure calculations of He-5(Lambda), Be-9(Lambda), C-13(Lambda), Be-10(Lambda Lambda) and He-6(Lambda Lambda) are carried out with an accurate three- and four-body model method in which all rearrangement Jacobian coordinates and associated Gaussian basis functions are taken. The characteristic properties of the spin-independent parts of five kinds of YNG Lambda N interactions are focused on. We propose to improve the strengths of the odd-state parts in a systematic way. The improved YNG interaction explains the B-Lambda(He-5(Lambda)) and B-Lambda(Be-9(Lambda)) consistently without an additional three-body force. By employing the 3 alpha + Lambda four-body model together with the improved YNG interactions, the second 1/2(+) state of C-13(Lambda) is predicted as a bound state at approximately 1 MeV below the lowest threshold. The four-body model enables us to find that response to the addition of the Lambda particle to the core nucleus C-12 is very different for the ground and second 0(+) states. With the improved YNG interaction and the OBE-simulating Lambda Lambda interaction, the observed B-Lambda Lambda(Be-10(Lambda Lambda)) is reproduced in the framework of the 2 alpha + 2 Lambda four-body model. Anew theoretical prediction for B-Lambda Lambda(He-6(Lambda Lambda)) is made with the alpha + 2 Lambda three-body model.
机译:He-5(Lambda),Be-9(Lambda),C-13(Lambda),Be-10(Lambda Lambda)和He-6(Lambda Lambda)的结构计算以精确的三和四进行体模型方法,其中采用了所有重排雅可比坐标和相关的高斯基函数。重点研究了五种YNG Lambda N相互作用的自旋无关部分的特征。我们建议以系统的方式提高奇态部件的强度。改进的YNG交互作用可始终如一地解释B-Lambda(He-5(Lambda))和B-Lambda(Be-9(Lambda)),而无需附加三体力。通过使用3 alpha + Lambda四体模型以及改进的YNG相互作用,C-13(Lambda)的第二个1/2(+)状态被预测为比最低阈值低大约1 MeV的结合状态。四体模型使我们能够发现,对于基态和第二个0(+)状态,对将Lambda粒子添加到核心核C-12的响应非常不同。通过改进的YNG交互作用和模拟Obe的Lambda Lambda交互作用,在2 alpha + 2 Lambda四体模型的框架中再现了观察到的B-Lambda Lambda(Be-10(Lambda Lambda))。利用α+ 2 Lambda三体模型对B-Lambda Lambda(He-6(Lambda Lambda))进行了新的理论预测。

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