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相关论文: Structure of the quartetting ground state of $N=Z$…

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The formal implications of a quartet coherent state ansatz for proton-neutron pairing are analyzed. Its nonlinear annihilation operators, which generalize the BCS linear quasiparticle operators, are computed in the quartetting case. Their…

核理论 · 物理学 2021-01-04 V. V. Baran , D. R. Nichita , D. Negrea , D. S. Delion , N. Sandulescu , P. Schuck

Isoscalar (T=0,J=1) and isovector (T=1,J=0) pairing correlations in the ground state of self-conjugate nuclei are treated in terms of alpha-like quartets built by two protons and two neutrons coupled to total isospin T=0 and total angular…

核理论 · 物理学 2015-06-23 M. Sambataro , N. Sandulescu , C. W. Johnson

The isoscalar proton-neutron pairing and isovector pairing, including both isovector proton-neutron pairing and like-particle pairing, are treated in a formalism which conserves exactly the particle number and the isospin. The formalism is…

核理论 · 物理学 2015-07-16 N. Sandulescu , D. Negrea , D. Gambacurta

We show that the correlations generated in the ground state of $N=Z$ nuclei by the isovector and isoscalar pairing forces can be treated with high precision as a condensate of alpha-like quartets. To treat these correlations, the quartet…

核理论 · 物理学 2016-06-22 M. Sambataro , N. Sandulescu

We describe the ground state of the isovector pairing Hamiltonian in self-conjugate nuclei by a product of collective quartets of different structure built from two neutrons and two protons coupled to total isospin T=0. The structure of the…

核理论 · 物理学 2015-06-18 M. Sambataro , N. Sandulescu

We propose a particle number conserving formalism for the treatment of isovector-isoscalar pairing in nuclei with $N>Z$. The ground state of the pairing Hamiltonian is described by a quartet condensate to which is appended a pair condensate…

核理论 · 物理学 2018-12-26 D. Negrea , P. Buganu , D. Gambacurta , N. Sandulescu

Unlike their lighter counterparts, most odd-odd N=Z nuclei with mass A > 40 40 have ground states with isospin T=1, suggesting an increased role for the isovector pairing interaction. A simple SO(5) seniority-like model of this interaction…

核理论 · 物理学 2008-11-26 J. Engel , K. Langanke , P. Vogel

We analyse the structure of the ground states of even-even $N>Z$ nuclei with nucleons moving in the same major shell and interacting via realistic two-body forces of shell-model type. We express the ground states of these nuclei as a…

核理论 · 物理学 2023-06-14 M. Sambataro , N. Sandulescu , D. Gambacurta

We study the isoscalar (T=0) and isovector (T=1) pairing correlations in N=Z nuclei. They are estimated from the double difference of binding energies for odd-odd N=Z nuclei and the odd-even mass difference for the neighboring odd-mass…

核理论 · 物理学 2009-11-10 Kazunari Kaneko , Munetake Hasegawa

We discuss the treatment of isovector pairing by an alpha-like quartet condensate which conserves exactly the particle number, the spin and the isospin. The results show that the quartet condensate describes accurately the isovector pairing…

核理论 · 物理学 2011-09-23 N. Sandulescu , J. Dukelsky , D. Negrea

We examine isovector and isoscalar proton-neutron pairing correlations for the ground state of even-even Ge isotopes with mass number A=64-76 within the deformed BCS approach. For N=Z 64Ge the BCS solution with only T=0 proton-neutron pairs…

核理论 · 物理学 2009-11-10 Fedor Simkovic , Charal Moustakidis , Larisa Pacearescu , Amand Faessler

The long standing problem of proton-neutron pairing and, in particular, the limitations imposed on the solutions by the available symmetries, is revisited. We look for solutions with non-vanishing expectation values of the proton, the…

核理论 · 物理学 2009-10-31 D. R. Bes , O. Civitarese , E. E. Maqueda , N. N. Scoccola

Two variational quartet models previously employed in a treatment of pairing forces are extended to the case of a general two-body interaction. One model approximates the nuclear states as a condensate of identical quartets with angular…

核理论 · 物理学 2017-04-05 M. Sambataro , N. Sandulescu

We study the competition between alpha-type and conventional pair condensation in the ground state of nuclei with neutrons and protons interacting via a charge-independent pairing interaction. The ground state is described by a product of…

核理论 · 物理学 2015-06-11 N. Sandulescu , D. Negrea , C. W. Johnson

The ground state correlations induced by a general pairing Hamiltonian in a finite system of like fermions are described in terms of four-body correlated structures (quartets). These are real superpositions of products of two pairs of…

核理论 · 物理学 2015-06-15 M. Sambataro , N. Sandulescu

We introduce a BCS-like theory for the quartet correlations induced by the isovector pairing interaction. It is based on a coherent state of BCS type and, unlike usual mean field approaches, it displays a vanishing pair anomalous density…

核理论 · 物理学 2020-06-02 V. V. Baran , D. S. Delion

We use shell model techniques in the complete pf shell to study pair correlations in nuclei. Particular attention is paid to the competition of isoscalar and isovector proton-neutron pairing modes which is investigated in the odd-odd N=Z…

核理论 · 物理学 2009-10-31 G. Martinez-Pinedo , K. Langanke , P. Vogel

We show that the symmetry-restored paired mean-field states (quasiparticle vacua) properly account for isoscalar versus isovector nuclear pairing properties. Full particle-number, spin, and isospin symmetries are restored in a simple SO(8)…

核理论 · 物理学 2019-06-24 A. M. Romero , J. Dobaczewski , A. Pastore

The quartet condensation model (QCM) is extended for the treatment of isovector and isoscalar pairing in odd-odd N=Z nuclei. In the extended QCM approach the lowest states of isospin T=1 and T=0 in odd-odd nuclei are described variationally…

核理论 · 物理学 2017-03-03 D. Negrea , N. Sandulescu , D. Gambacurta

We propose a simple quartet condensation model (QCM) which describes with very high accuracy the isovector pairing correlations in self-conjugate nuclei. The quartets have an alpha-like structure and are formed by collective isovector…

核理论 · 物理学 2015-06-04 N. Sandulescu , D. Negrea , J. Dukelsky , C. W. Johnson
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