nucleon pair
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2022 ◽  
Vol 105 (1) ◽  
Author(s):  
H. T. Xue ◽  
X. R. Zhou ◽  
S. Y. Zhang ◽  
B. C. He ◽  
Y. A. Luo ◽  
...  

2021 ◽  
Vol 103 (2) ◽  
Author(s):  
G. J. Fu ◽  
Calvin W. Johnson ◽  
P. Van Isacker ◽  
Zhongzhou Ren

2021 ◽  
Author(s):  
Yang Lei ◽  
Yi Lu ◽  
Yu-Min 赵玉民 Zhao

2020 ◽  
Vol 56 (12) ◽  
Author(s):  
Hoai Le ◽  
Johann Haidenbauer ◽  
Ulf-G. Meißner ◽  
Andreas Nogga

AbstractWe extend the recently developed Jacobi no-core shell model to hypernuclei. Based on the coefficients of fractional parentage for ordinary nuclei, we define a basis where the hyperon is the spectator particle. We then formulate transition coefficients to states that single out a hyperon–nucleon pair which allow us to implement a hypernuclear many-baryon Hamiltonian for p-shell hypernuclei. As a first application, we use the basis states and the transition coefficients to calculate the ground states of $$^{4}_{\varLambda }\hbox {He}$$ Λ 4 He , $$^{4}_{\varLambda }\hbox {H}$$ Λ 4 H , $$^{5}_{\varLambda }\hbox {He}$$ Λ 5 He , $$^{6}_{\varLambda }\hbox {He}$$ Λ 6 He , $$^{6}_{\varLambda }\hbox {Li}$$ Λ 6 Li , and $$^{7}_{\varLambda }\hbox {Li}$$ Λ 7 Li and, additionally, the first excited states of $$^{4}_{\varLambda }\hbox {He}$$ Λ 4 He , $$^{4}_{\varLambda }\hbox {H}$$ Λ 4 H , and $$^{7}_{\varLambda }\hbox {Li}$$ Λ 7 Li . In order to obtain converged results, we employ the similarity renormalization group (SRG) to soften the nucleon–nucleon and hyperon-nucleon interactions. Although the dependence on this evolution of the Hamiltonian is significant, we show that a strong correlation of the results can be used to identify preferred SRG parameters. This allows for meaningful predictions of hypernuclear binding and excitation energies. The transition coefficients will be made publicly available as HDF5 data files.


2020 ◽  
Vol 809 ◽  
pp. 135705
Author(s):  
G.J. Fu ◽  
Calvin W. Johnson

2020 ◽  
Vol 102 (2) ◽  
Author(s):  
B. C. He ◽  
Lei Li ◽  
Y. A. Luo ◽  
Y. Zhang ◽  
F. Pan ◽  
...  
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