English

The tensor-optimized high-momentum antisymmetrized molecular dynamics with bare interaction and its application in ${}^{4}$He nucleus

Nuclear Theory 2019-01-02 v2

Abstract

We formulate the "tensor-optimized high-momentum antisymmetrized molecular dynamics (TO-HMAMD)" framework for ab initio calculations of nuclei by hybridizing the tensor-optimized (TO-) and high-momentum (HM-) AMD approaches. This hybrid approach has advantages in both analytical simplicity and numerical efficiency comparing with other AMD-based methods which treat the bare interaction, especially for heavier nuclear systems. In this work, the ss-shell nucleus 4^{4}He is calculated with TO-HMAMD by including up to double product of nucleon-nucleon (NNNN) correlations, described by using high-momentum pairs and spatial correlation functions of nucleons. The total energy and radius of 4^{4}He nucleus are well reproduced using the AV8^\prime interaction. The spin-isospin channel dependence is also discussed for NNNN-correlations, which are found to be mostly contributed in the even-state channels, especially the triplet-even channel. Analyses of the analytical formation and numerical results suggest that TO-HMAMD could be a promising framework for general nuclear systems.

Keywords

Cite

@article{arxiv.1807.11213,
  title  = {The tensor-optimized high-momentum antisymmetrized molecular dynamics with bare interaction and its application in ${}^{4}$He nucleus},
  author = {Mengjiao Lyu and Takayuki Myo and Masahiro Isaka and Hiroshi Toki and Kiyomi Ikeda and Hisashi Horiuchi and Tadahiro Suhara and Taiichi Yamada},
  journal= {arXiv preprint arXiv:1807.11213},
  year   = {2019}
}

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