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 …
In this book the author presents two important findings revealed by high-precision magnetic penetration depth measurements in iron-based superconductors which exhibit high-transition temperature superconductivity up to 55 K: one is the fact that the superconducting gap structure in iron-based superconductors depends on a detailed electronic structure of individual materials, and the other is th…
No Inv.: 112810/P/Perp/08/1c
No Inv.: 4189-4191/Pb/Perp/86/3c~1804-1807/BD/Perp/87/4c
No Inv.: 2020/Perp/87/1c
No Inv.: 41/AF/Perp/89/1c~146/S/Perp/93/1c
No Inv.: 8316-8325/P/97/10c
No Inv.: 13418/P/Perp/94/1c
No Inv.: 2014/Perp/87/1c
This thesis presents a systematic study of the orbital evolution, gravitational wave radiation, and merger remnant of the black hole–neutron star binary merger in full general relativity for the first time. Numerical-relativity simulations are performed using an adaptive mesh refinement code, SimulAtor for Compact objects in Relativistic Astrophysics (SACRA), which adopts a wide variety of ze…