Constraining simultaneously nuclear symmetry energy and neutron-proton effective mass splitting with nucleus giant resonances from a dynamical approach
arXiv:1701.04502 · doi:10.1103/PhysRevC.95.034324
Abstract
With a newly improved isospin- and momentum-dependent interaction and an isospin-dependent Boltzmann-Uehling-Uhlenbeck transport model, we have investigated the effects of the slope parameter of the nuclear symmetry energy and the isospin splitting of the nucleon effective mass on the centroid energy of the isovector giant dipole resonance and the electric dipole polarizability in Pb. With the isoscalar nucleon effective mass constrained by the empirical optical potential, we obtain a constraint of and , with being the isospin asymmetry of nuclear medium. With the isoscalar nucleon effective mass extracted from the excitation energy of the isoscalar giant quadruple resonance in Pb, we obtain a constraint of and .
10 pages, 6 figures, tighter constraints with more statistics
References in corpus (17)
- Neutron Star Observations: Prognosis for Equation of State Constraints
- Neutron-Rich Nuclei in Heaven and Earth
- Constraints on the symmetry energy and on neutron skins from the pygmy resonances in 68Ni and 132Sn
- The Giant Dipole Resonance as a quantitative constraint on the symmetry energy
- Constraining the Eq. of State of Super-Hadronic Matter from Heavy-Ion Collisions
- Nuclear symmetry energy and its density slope at normal density extracted from global nucleon optical potentials
- Giant Quadrupole Resonances in 208Pb, the nuclear symmetry energy and the neutron skin thickness
- Cosmic Calibration: Constraints from the Matter Power Spectrum and the Cosmic Microwave Background
- Neutron-proton effective mass splitting in neutron-rich matter at normal density from analyzing nucleon-nucleus scattering data within an isospin dependent optical model
- Thermal properties of asymmetric nuclear matter with an improved isospin- and momentum-dependent interaction
- The Dynamical Dipole Mode in Fusion Reactions with Exotic Nuclear Beams
- Pygmy and Giant Dipole Resonances by Coulomb Excitation using a Quantum Molecular Dynamics model
- Revisit of the neutron/proton ratio puzzle in intermediate-energy heavy-ion collisions
- Dynamical dipole radiation in heavy-ion collisions on the basis of the quantum molecular dynamics model
- Neutron-proton effective mass splitting in neutron-rich matter and its impacts on nuclear reactions
- Density matrix expansion for the MDI interaction
- Isospin dependence of nucleon effective masses in neutron-rich matter
Cited by in corpus (40)
- Nuclear Equation of State from ground and collective excited state properties of nuclei
- Nucleon Effective Masses in Neutron-Rich Matter
- Dense Nuclear Matter Equation of State from Heavy-Ion Collisions
- Comparison of Heavy-Ion Transport Simulations: Mean-field Dynamics in a Box
- Interdependence of different symmetry energy elements
- Feasability of constraining the curvature parameter of the symmetry energy using elliptic flow data
- Bayesian inference of nuclear symmetry energy from measured and imagined neutron skin thickness in Sn, Pb, and Ca
- Nucleonic metamodelling in light of multimessenger, PREX-II and CREX data
- Tides in merging neutron stars: Consistency of the GW170817 event with experimental data on finite nuclei
- Effect of isovector scalar meson on equation of state of dense matter within relativistic mean field model
- Extended Skyrme interactions for transport model simulations of heavy-ion collisions
- Providing physics guides in Bayesian neural networks from input layer: case of giant dipole resonance predictions
- Constraining isovector nuclear interactions with giant resonances within a Bayesian approach
- Nucleus giant resonances from an improved isospin-dependent Boltzmann-Uehling-Uhlenbeck transport approach
- Nuclear collective dynamics in the lattice Hamiltonian Vlasov method
- Bayesian uncertainty quantification for nuclear matter incompressibility
- Neutron-proton effective mass splitting in neutron-rich matter
- Constraining isovector nuclear interactions with giant dipole resonance and neutron skin in Pb from a Bayesian approach
- Beyond-mean-field effects on the symmetry energy and its slope from the low-lying dipole response of Ni
- Constraining nuclear matter parameters from correlation systematics:a mean-field perspective
- Impacts of symmetry energy slope on the oscillation frequencies of neutron stars with short-range correlation and admixed dark matter
- Nuclear collective dynamics in transport model with the lattice Hamiltonian method
- Bayesian inference of finite-nuclei observables based on the KIDS model
- Impact parameter smearing effects on isospin sensitive observables in heavy ion collisions
- The nucleon effective mass and its isovector splitting
- Bayesian inference on the isospin splitting of nucleon effective mass from giant resonances in Pb
- Correlations among symmetry energy elements in Skyrme models
- Nuclear giant quadruple resonance within transport approach and its constraint on nucleon effective mass
- Effects of the momentum dependence of nuclear symmetry potential on pion observables in Sn + Sn collisions at 270 MeV/nucleon
- Experimental study of the Ca+ Ca reactions at 35 MeV/nucleon
- Revisiting the isospin relaxation time in intermediate-energy heavy-ion collisions
- Neutron-proton differential transverse flow in Sn + Sn collisions at 270 MeV/nucleon
- Isovector giant dipole resonance mode with an improved propagation approach in the framework of EQMD model
- Constraining neutron-proton effective mass splitting through nuclear giant dipole resonance within transport approach
- Correlation between nuclear temperatures and symmetry energy in sub-saturation
- In-medium potential, pion production in heavy-ion collisions and the symmetry energy
- Phase-space excluded-volume approach for light clusters in nuclear medium
- Transport Model Comparison Studies of Intermediate-Energy Heavy-Ion Collisions
- Recent applications of the subtracted second RPA method
- Bayesian Analyses of Proton Multiple Flow Components in Intermediate Heavy Ion Collisions with Momentum-Dependent Interactions