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New successive variational method of tensor-optimized antisymmetrized molecular dynamics for nuclear many-body systems

Authors :
Myo, Takayuki
Toki, Hiroshi
Ikeda, Kiyomi
Horiuchi, Hisashi
Suhara, Tadahiro
Source :
Progress of Theoretical and Experimental Physics 2017, 073D01 (2017)
Publication Year :
2017

Abstract

We recently proposed a new variational theory of "tensor-optimized antisymmetrized molecular dynamics" (TOAMD), which treats the strong interaction explicitly for finite nuclei [T. Myo et al., Prog. Theor. Exp. Phys. 2015, 073D02 (2015)]. In TOAMD, the correlation functions for the tensor force and the short-range repulsion and their multiple products are successively operated to the AMD state. The correlated Hamiltonian is expanded into many-body operators by using the cluster expansion and all the resulting operators are taken into account in the calculation without any truncation. We show detailed results for TOAMD with the nucleon-nucleon interaction AV8$^\prime$ for $s$-shell nuclei. The binding energy and the Hamiltonian components are successively converged to exact values of the few-body calculations. We also apply TOAMD to the Malfliet-Tjon central potential having a strong short-range repulsion. TOAMD can treat the short-range correlation and provided accurate energies of $s$-shell nuclei, reproducing the results of few-body calculations. It turns out that the numerical accuracy of TOAMD with double products of the correlation functions is beyond the variational Monte Carlo method with Jastrow's product-type correlation functions.<br />Comment: 25 pages, 24 figures, corrected typos

Subjects

Subjects :
Nuclear Theory

Details

Database :
arXiv
Journal :
Progress of Theoretical and Experimental Physics 2017, 073D01 (2017)
Publication Type :
Report
Accession number :
edsarx.1706.09560
Document Type :
Working Paper
Full Text :
https://doi.org/10.1093/ptep/ptx089