Isovector Giant Dipole Resonance from the 3D Time-Dependent Density Functional Theory for Superfluid Nuclei
arXiv:1108.3064 · doi:10.1103/PhysRevC.84.051309
Abstract
A fully symmetry unrestricted Time-Dependent Density Functional Theory extended to include pairing correlations is used to calculate properties of the isovector giant dipole resonances of the deformed open-shell nuclei 172Yb (axially deformed), 188Os (triaxially deformed), and 238U (axially deformed), and to demonstrate good agreement with experimental data on nuclear photo-absorption cross-sections for two different Skyrme force parametrizations of the energy density functional: SkP and SLy4.
5 pages, 3 figures, published version
References in corpus (15)
- Canonical-basis time-dependent Hartree-Fock-Bogoliubov theory and linear-response calculations
- Local Density Functional Theory for Superfluid Fermionic Systems: The Unitary Gas
- A Unitary Fermi Supersolid: The Larkin-Ovchinnikov Phase
- Finite amplitude method for the quasi-particle-random-phase approximation
- Pairing Vibrations Study with the Time-Dependent Hartree-Fock-Bogoliubov theory
- Generation and Dynamics of Quantized Vortices in a Unitary Fermi Superfluid
- Multipole strength function of deformed superfluid nuclei made easy
- Self-consistent Skyrme QRPA for use in axially-symmetric nuclei of arbitrary mass
- Linear response of light deformed nuclei investigated by self-consistent quasiparticle random-phase-approximation
- Large Amplitude Dynamics of the Pairing Correlations in a Unitary Fermi Gas
- Low-energy dipole excitations in neon isotopes and N=16 isotones within the quasiparticle random phase approximation and the Gogny force
- TDDFT with Skyrme Forces: Effect of Time-Odd Densities on Electric Giant Resonances
- Testing Skyrme energy-density functionals with the QRPA in low-lying vibrational states of rare-earth nuclei
- Mass dispersions from giant dipole resonances using the Balian-Veneroni variational approach
- Mass Distributions Beyond TDHF
Cited by in corpus (87)
- Nuclear Quantum Many-Body Dynamics: From Collective Vibrations to Heavy-Ion Collisions
- Time-dependent density-functional description of nuclear dynamics
- Nuclear Equation of State from ground and collective excited state properties of nuclei
- Induced Fission of Pu within a Real-Time Microscopic Framework
- Time-dependent Hartree-Fock calculations for multinucleon transfer processes in Ca+Sn, Ca+Pb, and Ni+Pb reactions
- Heavy-ions collisions and fission dynamics with the time-dependent Hartree-Fock theory and its extensions
- Formation and dynamics of fission fragments
- Effect of pairing on one- and two-nucleon transfer below the Coulomb barrier: a time-dependent microscopic description
- TDHF Theory and Its Extensions for the Multinucleon Transfer Reaction: a Mini Review
- Fission dynamics within time-dependent Hartree-Fock: deformation-induced fission
- Microscopic phase-space exploration modeling of Fm spontaneous fission
- Stochastic quantum dynamics beyond mean-field
- Microscopic approach to coupled-channels effects on fusion
- Time-Dependent Density Functional Theory and the Real-Time Dynamics of Fermi Superfluids
- Vortex pinning and dynamics in the neutron star crust
- Shape evolution and collective dynamics of quasifission in TDHF
- Novel Role of Superfluidity in Low-Energy Nuclear Reactions
- Use of the Discrete Variable Representation Basis in Nuclear Physics
- The unrestricted Skyrme-tensor time-dependent Hartree-Fock and its application to the nuclear response from spherical to triaxial nuclei
- Systematic of isovector and isoscalar giant quadrupole resonances in normal and superfluid spherical nuclei
- Feasibility of the finite amplitude method in covariant density functional theory
- Computational Nuclear Quantum Many-Body Problem: The UNEDF Project
- Pairing dynamics in particle transport
- Fission dynamics within time-dependent Hartree-Fock: boost-induced fission
- Finite amplitude method applied to giant dipole resonance in heavy rare-earth nuclei
- Collective aspects deduced from time-dependent microscopic mean-field with pairing: application to the fission process
- Density functional approaches to collective phenomena in nuclei: Time-dependent density-functional theory for perturbative and non-perturbative nuclear dynamics
- Time-dependent HF approach to SHE dynamics
- The electric dipole response of Se above 4 MeV
- Systematic of isovector and isoscalar giant quadrupole resonances in normal and superfluid deformed nuclei
- Gauge angle dependence in TDHFB calculations of O + O head-on collisions with the Gogny interaction
- Relativistic Coulomb excitation within Time Dependent Superfluid Local Density Approximation
- Adaptive Multi-resolution 3D Hartree-Fock-Bogoliubov Solver for Nuclear Structure
- Tilted-axis wobbling in odd-mass nuclei
- Coordinate-Space Solver for Superfluid Many-Fermion Systems with Shifted Conjugate Orthogonal Conjugate Gradient Method
- Microscopic analysis of fusion hindrance in heavy systems
- Quantal corrections to mean-field dynamics including pairing
- Validating Simple Dynamical Simulations of the Unitary Fermi Gas
- Strength of the Vortex-Pinning Interaction from Real-Time Dynamics
- Transfer probabilities for the reactions O+O in terms of multiple time-dependent Hartree-Fock-Bogoliubov trajectories
- Continuum time-dependent Hartree-Fock for giant resonances in spherical nuclei
- Magnetic dipole excitations based on the relativistic nuclear energy density functional
- Structure and direct decay of Giant Monopole Resonances
- Investigation of giant dipole resonance in heavy deformed nuclei with the EQMD model
- Coordinate-space solver for finite-temperature Hartree-Fock-Bogoliubov calculation using the shifted Krylov method
- Neck Rupture and Scission Neutrons in Nuclear Fission
- Indirect methods in nuclear astrophysics with relativistic radioactive beams
- Multipole modes of excitation in triaxially deformed superfluid nuclei
- Challenges in description of heavy-ion collisions with microscopic time-dependent approaches
- Density-constraint Time-dependent Hartree-Fock-Bogoliubov method
- Microscopic description of pair transfer between two superfluid Fermi systems: combining phase-space averaging and combinatorial techniques
- Pure quantum extension of the semiclassical Boltzmann-Uehling-Uhlenbeck equation
- Nuclear Quantum Many-Body Dynamics: From Collective Vibrations to Heavy-Ion Collisions (2nd edition)
- Nuclear Energy Density Functionals: What do we really know?
- TDHF and a macroscopic aspect of low-energy nuclear reactions
- Effect of pairing on transfer and fusion reactions
- Non-iterative finite amplitude methods for E1 and M1 giant resonances
- Quantum microscopic approach to low-energy heavy ion collisions
- Learning the structure of giant resonances from their -decay
- Magnetic dipole excitation and its sum rule in nuclei with two valence nucleons
- Nuclear ground states in a consistent implementation of the time-dependent density matrix approach
- Solitonic excitations in collisions of superfluid nuclei: a qualitatively new phenomenon distinct from the Josephson effect
- An implementation of nuclear time-dependent density-functional theory and its application to the nuclear isovector electric dipole resonance
- Fission of relativistic nuclei with fragment excitation and reorientation
- Current Status of Nuclear Physics Research
- Sensitivity to the initial conditions of the Time-Dependent Density Functional Theory
- The evolution of magnetic dipole strength in Sn isotope chain and quenching of nucleon g factors
- Local alpha-removal strength in the mean-field approximation
- Superfluid fission dynamics with microscopic approaches
- Time-dependent mean field determination of the excitation energy in transfer reactions: application to the reaction U on C at 6.14 MeV/A
- Charge-exchange dipole excitations in deformed nuclei
- Microscopic collective inertial masses for nuclear reaction in the presence of nucleonic effective mass
- Non-Markovian character and irreversibility of real-time quantum many-body dynamics
- Pygmy resonances and symmetry energy
- Microscopic description of large amplitude collective motion in the nuclear astrophysics context
- Density functional approaches to atomic nuclei
- Density functional approaches to nuclear dynamics
- Comparative study of the requantization of the time-dependent mean field for the dynamics of nuclear pairing
- A Time Dependent Multi-Determinant approach to nuclear dynamics
- Microscopic study of the effect of intrinsic degrees of freedom on fusion
- Probing quantum many-body dynamics in nuclear systems
- Fission in a microscopic framework: from basic science to support for applications
- Time-dependent Hartree-Fock Study of Octupole Vibrations in doubly magic nuclei
- Dynamical scheme for computing the mass parameter of a system in a medium
- Local energy density functional for superfluid Fermi gases from effective field theory
- Microscopic Calculations of Vortex-Nucleus Interaction in the Neutron Star Crust
- The LISE package: solvers for static and time-dependent superfluid local density approximation equations in three dimensions