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S-pairing in neutron matter: I. Correlated basis function theory

机译:中子物质中的S对:I.相关基函数理论

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S-wave pairing in neutron matter is studied within an extension of correlated basis function (CBF) theory to include the strong, short range spatial correlations due to realistic nuclear forces and the pairing correlations of the Bardeen, Cooper and Schrieffer (BCS) approach. The correlation operator contains central as well as tensor components. The correlated BCS scheme of [S. Fantoni, Nucl. Phys. A 363 (1981) 381], developed for simple scalar correlations, is generalized to this more realistic case. The energy of the correlated pair condensed phase of neutron matter is evaluated at the two-body order of the cluster expansion, but considering the one-body density and the corresponding energy vertex corrections at the first order of the Power Series expansion. Based on these approximations, we have derived a system of Euler equations for the correlation factors and for the BCS amplitudes, resulting in correlated nonlinear gap equations, formally close to the standard BCS ones. These equations have been solved for the momentum independent part of several realistic potentials (Reid, Argonne upsilon(14) and Argonne upsilon(8')) to stress the role of the tensor correlations and of the many-body effects. Simple Jastrow correlations and/or the lack of the density corrections enhance the gap with respect to uncorrelated BCS, whereas it is reduced according to the strength of the tensor interaction and following the inclusion of many-body contributions. (c) 2008 Elsevier B.V. All rights reserved.
机译:在相关基础函数(CBF)理论的扩展范围内研究了中子中的S波配对,以包括由于实际核力引起的强,短距离空间相关性以及Bardeen,Cooper和Schrieffer(BCS)方法的配对相关性。相关运算符包含中心分量和张量分量。 [S.范托尼(Nucl。)物理针对简单的标量相关性开发的363(1981)381]被推广到了这种更为现实的情况。中子物质的相关对凝聚相的能量是按簇扩展的两体阶进行评估的,但要考虑单体密度和幂级数扩展的一阶对应的能量顶点校正。基于这些近似,我们为相关因子和BCS振幅推导了一个Euler方程系统,得到了相关的非线性间隙方程,形式上接近于标准BCS方程。这些方程已经解决了几个实际势能的动量独立部分(Reid,Argonne upsilon(14)和Argonne upsilon(8')),以强调张量相关性和多体效应的作用。简单的Jastrow相关性和/或缺乏密度校正会增加不相关BCS的差距,而根据张量交互作用的强度并在包含多体贡献后会减小。 (c)2008 Elsevier B.V.保留所有权利。

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