Isoscalar and isovector giant resonances in a self-consistent phonon coupling approach
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- Type
- article
- Published
- 2015-10-07
- Cited by
- 23
- References
- 49
- Access
- Open access
- OpenAlex
- https://openalex.org/W1054844253
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:118471875
Keywords
Physics, Isoscalar, Isovector, Random phase approximation, Quadrupole
References
- Isoscalar E0 strength between 6 and 11 MeV in 40 Ca
- Theory of complex nuclei
- Electric and magnetic giant resonances in nuclei
- Droplet Model of Atomic Nuclei
- Spreading widths of giant resonances in 12 C and 16 O
- Nuclear Structure, Vol. 1
- Extended theory of finite Fermi systems: collective vibrations in closed shell nuclei
- On the energy-dependence of the mass-operator and the „effective-interaction“
- A generalized Numerov method for linear second-order differential equations involving a first derivative term
- Microscopic theory of the γ decay of nuclear giant resonances
- Misfits in Skyrme–Hartree–Fock
- Relativistic Hartree-Bogoliubov theory: static and dynamic aspects of exotic nuclear structure
- Self-consistent mean-field models for nuclear structure
- Measurements of the giant dipole resonance with monoenergetic photons
- The Skyrme interaction in finite nuclei and nuclear matter
- Alpha and proton decay of the isoscalar E2 resonance in 16O and 40Ca
- The method of time-ordered graph decoupling and its application to the description of giant resonances in magic nuclei
- Second-order equation of state with the full Skyrme interaction: toward new effective interactions for beyond mean-field models
- Dynamics of the shell model
- Systematics of collective correlation energies from self-consistent mean-field calculations
Cited by
- Microscopic calculations of the characteristics of radiative nuclear reactions for double-magic nuclei
- On microscopic theory of radiative nuclear reaction characteristics
- Estimating the relevance of predictions from the Skyrme–Hartree–Fock model
- The phonon-coupling model for Skyrme forces
- Radiative strength function and the pygmy dipole resonance in 208Pb and 70Ni
- Towards a self-consistent dynamical nuclear model
- Many-body Green functions in nuclear physics
- Self-consistent calculations of radiative nuclear reaction characteristics for 56Ni, 132Sn, 208Pb
- The compression-mode giant resonances and nuclear incompressibility
- Nuclear equation of state from ground and collective excited state properties of nuclei
- Fine Structure and Collectivity of the Levels of the Pygmy Dipole Resonance in 208Pb in a Self-Consistent Model
- Excitation spectra of exotic nuclei in a self-consistent phonon-coupling model
- Nuclear dipole response in the finite-temperature relativistic time-blocking approximation
- Low-energy M1 excitations in Pb208 and the spin channel of the Skyrme energy-density functional
- Toward an accurate strongly coupled many-body theory within the equation-of-motion framework
- Results of Microscopic Self-Consistent Theory of Quasiparticle—Phonon Interaction in Nuclei
- Particle-vibration coupling for giant resonances beyond the diagonal approximation
- Providing physics guidance in Bayesian neural networks from the input layer: The case of giant dipole resonance predictions
- Self-consistent description of high-spin states in doubly magic Pb208
- Spurious dipole mode in random-phase approximation and in models based on this approximation
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