132 research outputs found

    Four-body structure of Ξ›7^7_{\Lambda}Li and Ξ›N\Lambda N spin-dependent interaction

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    Two spin-doublet states of %3/2+3/2^+-1/2+1/2^+ and 7/2+7/2^+-5/2+5/2^+ in Ξ›7^7_{\Lambda}Li are studied on the basis of the Ξ±+Ξ›+n+p\alpha +\Lambda +n+p four-body model. We employ the two-body interactions which reproduce the observed properties of any subsystems composed of Ξ±N\alpha N, Ξ±Ξ›\alpha \Lambda and Ξ±NN\alpha NN, and Ξ±Ξ›N\alpha \Lambda N. Furthermore, the Ξ›N\Lambda N interaction is adjusted so as to reproduce the 0+0^+-1+1^+ splitting of in Ξ›4^4_{\Lambda}H. The calculated energy splittings of 3/2+3/2^+-1/2+1/2^+ and 7/2+7/2^+-5/2+5/2^+ states in Ξ›7^7_{\Lambda}Li are 0.69 MeV and 0.46 MeV, which are in good agreement with the resent observed data. The spin-dependent components of the Ξ›N\Lambda N interaction are discussed.Comment: 6 pages, 2 figures, published to be in Phys. Rev.

    Relativistic Mean-Field and Beyond Approaches for Deformed Hypernuclei

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    We report the recent progress in relativistic mean-field (RMF) and beyond approaches for the low-energy structure of deformed hypernuclei. We show that the Ξ›\Lambda hyperon with orbital angular momentum β„“=0\ell=0 (or β„“>1\ell>1) generally reduces (enhances) nuclear quadrupole collectivity. The beyond mean-field studies of hypernuclear low-lying states demonstrate that there is generally a large configuration mixing between the two components [Aβˆ’1Z(I+)βŠ—Ξ›p1/2]J[^{A-1}Z (I^+) \otimes \Lambda p_{1/2}]^J and [Aβˆ’1Z(IΒ±2+)βŠ—Ξ›p3/2]J[^{A-1}Z (I\pm2 ^+) \otimes \Lambda p_{3/2}]^J in the hypernuclear 1/21βˆ’,3/21βˆ’1/2^-_1, 3/2^-_1 states. The mixing weight increases as the collective correlation of nuclear core becomes stronger. Finally, we show how the energies of hypernuclear low-lying states are sensitive to parameters in the effective NΞ›N \Lambda interaction, the uncertainty of which has a large impact on the predicted maximal mass of neutron stars.Comment: 12 pages, 7 figures. A plenary talk given at the 13th International Conference on Hypernuclear and Strange Particle Physics, June 24-29, 2018, Portsmouth, V

    Disappearance of nuclear deformation in hypernuclei: a perspective from a beyond-mean-field study

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    The previous mean-field calculation [Myaing Thi Win and K. Hagino, Phys. Rev. C{\bf 78}, 054311 (2008)] has shown that the oblate deformation in 28,30,32^{28,30,32}Si disappears when a Ξ›\Lambda particle is added to these nuclei. We here investigate this phenomenon by taking into account the effects beyond the mean-field approximation. To this end, we employ the microscopic particle-rotor model based on the covariant density functional theory. We show that the deformation of 30^{30}Si does not completely disappear, even though it is somewhat reduced, after a Ξ›\Lambda particle is added if the beyond-mean-field effect is taken into account. We also discuss the impurity effect of Ξ›\Lambda particle on the electric quadrupole transition, and show that an addition of a Ξ›\Lambda particle leads to a reduction in the B(E2)B(E2) value, as a consequence of the reduction in the deformation parameter.Comment: 6 pages, 5 figures. The version to appear in Phys. Rev.

    Light Ξ\Xi hypernuclei in four-body cluster models

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    Detailed structure calculations in Ξžβˆ’β€…12^{\: 12}_{\Xi^-}Be, Ξžβˆ’β€…5^{\: 5}_{\Xi^-}H, Ξžβˆ’β€…9^{\: 9}_{\Xi^-}Li, Ξžβˆ’β€…7^{\: 7}_{\Xi^-}H and Ξžβˆ’β€…10^{\:10}_{\Xi^-}Li are performed within the framework of the microscopic two-, three- and four-body cluster models using the Gaussian Expansion Method.Comment: 14 pages, 19 figures. To be published in Phys. Rev.
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