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相关论文: SMMC studies of N=Z pf-shell nuclei with pairing-p…

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We utilize a nuclear shell model Hamiltonian with only two adjustable parameters to generate, for the first time, exact solutions for pairing correlations for light to medium-mass nuclei, including the challenging proton-neutron pairs,…

核理论 · 物理学 2019-12-18 M. E. Miora , K. D. Launey , D. Kekejian , F. Pan , J. P. Draayer

We perform a systematic study of Gamow-Teller (GT) transitions in the 2p1f shell, using the nuclear shell model with two schematic Hamiltonians. The use of the shell model provides flexibility to analyze the role of different proton-neutron…

核理论 · 物理学 2019-09-12 A. Carranza M. , S. Pittel , Jorge G. Hirsch

The recently-proposed effective shell-model interaction, the pairing-plus-multipole Hamiltonian with the monopole interaction obtained by empirical fits starting from the monopole-based universal force (PMMU), is systematically applied to…

核理论 · 物理学 2015-10-20 K. Kaneko , T. Mizusaki , Y. Sun , S. Tazaki

We perform Shell Model Monte Carlo calculations to study pair correlations in the ground states of $N=Z$ nuclei with masses A=48-60. We find that $T=1$, $J^{\pi}=0^+$ proton-neutron correlations play an important, and even dominant role, in…

核理论 · 物理学 2009-10-30 K. Langanke , D. J. Dean , S. E. Koonin , P. B. Radha

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 perform large-scale shell model Monte Carlo (SMMC) calculations for many nuclei in the mass range A=56-65 in the complete pfg_{9/2}d_{5/2} model space using an effective quadrupole-quadrupole+pairing residual interaction. Our…

核理论 · 物理学 2009-11-07 D. J. Dean , K. Langanke , J. M. Sampaio

We describe the importance of charge-exchange reactions, and in particular Gamow-Teller transitions, in astrophysical processes and double beta decay, and in understanding of nuclear structure. We first provide an overview of the central…

核理论 · 物理学 2020-06-16 A. Carranza M. , S. Pittel , Jorge G. Hirsch

A fermion realization of the compact symplectic sp(4) algebra provides a natural framework for studying isovector pairing correlations in nuclei. While these correlations manifest themselves most clearly in the binding energies of 0^+…

核理论 · 物理学 2008-11-26 K. D. Sviratcheva , A. I. Georgieva , J. P. Draayer

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

We utilize the Shell Model Monte Carlo (SMMC) method to study the structure of rare earth nuclei. This work demonstrates the first systematic ``full oscillator shell plus intruder'' calculations in such heavy nuclei. Exact solutions of a…

核理论 · 物理学 2009-10-31 J. A. White , S. E. Koonin , D. J. Dean

We propose a procedure to determine the effective nuclear shell-model Hamiltonian in a truncated space from a self-consistent mean-field model, e.g., the Skyrme model. The parameters of pairing plus quadrupole-quadrupole interaction with…

核理论 · 物理学 2009-09-28 Kazunari Kaneko , Takahiro Mizusaki , Yang Sun , Munetake Hasegawa

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 perform analysis of realistic nucleon-nucleon interactions, as well as of empirically-corrected interactions, fitted to reproduce in detail the spectroscopic data in p and sd shells. We focus on the multipole part of the interactions,…

核理论 · 物理学 2023-01-10 Kamila Sieja

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 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

We present a practical solution to the "sign problem" in the auxiliary field Monte Carlo approach to the nuclear shell model. The method is based on extrapolation from a continuous family of problem-free Hamiltonians. To demonstrate the…

核理论 · 物理学 2008-11-26 Y. Alhassid , D. J. Dean , S. E. Koonin , G. Lang , W. E. Ormand

The mean-field approximation predicts pairing and shape phase transitions in nuclei as a function of temperature or excitation energy. However, in the finite nucleus the singularities of these phase transitions are smoothed out by quantal…

核理论 · 物理学 2015-06-11 Y. Alhassid , C. Özen , H. Nakada

The shell-model Monte Carlo (SMMC) technique transforms the traditional nuclear shell-model problem into a path-integral over auxiliary fields. We describe below the method and its applications to four physics issues: calculations of sdpf-…

核理论 · 物理学 2009-10-31 D. J. Dean , J. A. White

The role of L=0 pairing interactions (both T=0 and T=1) in three selected bands with the total isospin T=0 in 22Na, 48Cr and 90Rh nuclei is discussed in the spherical shell model. These bands were selected requiring termination in a most…

核理论 · 物理学 2007-05-23 A. Juodagalvis

The present study brings forward important information, within the framework of spectral distribution theory, about the types of forces that dominate three realistic interactions, CD-Bonn, CDBonn+ 3terms and GXPF1, in nuclei and their…

核理论 · 物理学 2007-05-23 K. D. Sviratcheva , J. P. Draayer , J. P. Vary
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