Realistic shell-model calculations: current status and open problems
arXiv:1001.3520 · doi:10.1088/0954-3899/37/6/064044
Abstract
The main steps involved in realistic shell-model calculations employing two-body low-momentum interactions are briefly reviewed. The practical value of this approach is exemplified by the results of recent calculations and some remaining open questions and directions for future research are discussed.
12 pages, 2 figures, contribution to J. Phys G, Special Issue, Focus Section: Open Problems in Nuclear Structure
References in corpus (19)
- The Shell Model as Unified View of Nuclear Structure
- The two-nucleon system at next-to-next-to-next-to-leading order
- Recent developments in no-core shell-model calculations
- Three-Nucleon Low-Energy Constants from the Consistency of Interactions and Currents in Chiral Effective Field Theory
- Shell-model calculations and realistic effective interactions
- Low-momentum interaction in few-nucleon systems
- Renormalization of chiral two-pion exchange NN interactions. Momentum vs. coordinate space
- Benchmark calculations for 3H, 4He, 16O and 40Ca with ab-initio coupled-cluster theory
- Similarity of nuclear structure in 132Sn and 208Pb regions: proton-neutron multiplets
- Low Momentum Nucleon-Nucleon Interactions and Shell-Model Calculations
- Study of neutron-rich calcium isotopes with a realistic shell-model interaction
- Gamow shell-model calculations of drip-line oxygen isotopes
- Structure of exotic nuclei around double shell closures
- Shell-model study of the N=82 isotonic chain with a realistic effective hamiltonian
- Low momentum shell model effective interactions with all-order core polarizations
- Shell-model interpretation of high-spin states in 134-I
- The Theory of Nuclear Forces: Is the Never-Ending Story Coming to an End?
- Model Calculation of Effective Three-Body Forces
- Low-momentum nucleon-nucleon interaction and shell-model calculations