Interacting Boson Model from Energy Density Functionals
Book Details
Format
Paperback / Softback
Book Series
Springer Theses
ISBN-10
443154741X
ISBN-13
9784431547419
Publisher
Springer Verlag, Japan
Imprint
Springer Verlag, Japan
Country of Manufacture
JP
Country of Publication
GB
Publication Date
Mar 7th, 2015
Print length
188 Pages
Product Classification:
Condensed matter physics (liquid state & solid state physics)Condensed matter physics (liquid state and solid state physics)Electricity, electromagnetism & magnetismElectricity, electromagnetism and magnetismMathematical / Computational / Theoretical physicsMathematical physicsMaterials science
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This thesis describes a novel and robust way of deriving a Hamiltonian of the interacting boson model based on microscopic nuclear energy density functional theory.
This thesis describes a novel and robust way of deriving a Hamiltonian of the interacting boson model based on microscopic nuclear energy density functional theory. Based on the fact that the multi-nucleon induced surface deformation of finite nucleus can be simulated by effective boson degrees of freedom, observables in the intrinsic frame, obtained from self-consistent mean-field method with a microscopic energy density functional, are mapped onto the boson analog. Thereby, the excitation spectra and the transition rates for the relevant collective states having good symmetry quantum numbers are calculated by the subsequent diagonalization of the mapped boson Hamiltonian. Because the density functional approach gives an accurate global description of nuclear bulk properties, the interacting boson model is derived for various situations of nuclear shape phenomena, including those of the exotic nuclei investigated at rare-isotope beam facilities around the world. This work provides, for the first time, crucial pieces of information about how the interacting boson model is justified and derived from nucleon degrees of freedom in a comprehensive manner.
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