Particle-number-conserving theory for nuclear pairing
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- Type
- article
- Published
- 2013-05-13
- Cited by
- 13
- References
- 34
- Access
- Open access
- OpenAlex
- https://openalex.org/W322340458
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:118894603
Keywords
Pairing, Mesoscopic physics, Formalism (music), Physics, Density matrix
References
- Colloquium: Exactly solvable Richardson-Gaudin models for many-body quantum systems
- Microscopic derivation of a collective bosonic Hamiltonian with the generalized density matrix method
- Crossover from bulk to few-electron limit in ultrasmall metallic grains
- Generalized density matrix reexamined: Microscopic approach to collective dynamics in soft spherical nuclei
- On the Restoration of Symmetry in Paired Fermion Systems
- CONSERVATION OF PARTICLE NUMBER IN THE NUCLEAR PAIRING MODEL
- A and V
- NUCLEAR SPECTROSCOPY WITH TWO-NUCLEON TRANSFER REACTIONS
- Theory of superconductivity
- Fock-space diagonalization of the state-dependent pairing Hamiltonian with the Woods-Saxon mean field
- Nuclear pairing correlations by a quantum Monte Carlo method
- Validity of the generalized density matrix method for the microscopic calculation of a collective/bosonic Hamiltonian
- POSSIBLE ANALOGY BETWEEN THE EXCITATION SPECTRA OF NUCLEI AND THOSE OF THE SUPERCONDUCTING METALLIC STATE
- The Generalized Density Matrix Method in the Theory of Nuclear Collective Motion
- Pairing Hamiltonian by a path integral Monte Carlo procedure.
- GENERALIZED HARTREE-FOCK APPROXIMATION FOR THE CALCULATION OF COLLECTIVE STATES OF A FINITE MANY-PARTICLE SYSTEM
- The nuclear pairing problem: new perspectives
- NUMBER-CONSERVING THEORY OF NUCLEAR PAIRING GAPS: A GLOBAL ASSESSMENT
- A restricted class of exact eigenstates of the pairing-force Hamiltonian
- Particle-Number Projection and the Density Functional Theory
Cited by
- Solving for the particle-number-projected HFB wavefunction
- Low excitations of 16O using generalized density matrix random phase approximation GDRPA
- Particle-number conservation in quasiparticle representation in the isovector neutron–proton pairing case
- Practical Calculation Scheme for Generalized Seniority
- Shell-model-like approach based on cranking covariant density functional theory: Band crossing and shape evolution in Fe 60
- Band crossings in 168Ta: A particle-number conserving analysis
- Isovector pairing and particle-number fluctuation effects on the spectroscopic factors of one-proton stripping and one-neutron pick-up reactions in proton-rich nuclei
- Application of the variational principle to a coherent-pair condensate: The BCS case
- Systematic investigation of the high- K isomers and the high-spin rotational bands in the neutron-rich Nd and Sm isotopes by a particle-number conserving method
- Configuration and bandhead spin assignments for the two-quasiparticle rotational bands in the neutron-rich nuclei Pm154,156
- Rotational excitations in rare-earth nuclei: A comparative study within three cranking models with different mean fields and treatments of pairing correlations
- Systematic investigation of the high-spin structures in the odd-odd nuclei ^166, 168, 170, 172Re by a particle-number conserving method
- Gallagher-Moszkowski splitting in deformed odd-odd nuclei within a microscopic approach
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