The ground-state magnetic moment, gK factor and quenching spin gyromagnetic ratio have been calculated using the microscopic method based on the Quasiparticle Phonon Nuclear Model (QPNM) for Ho155-169 nuclei for the first time. It is shown that the residual spin-spin interactions are responsible for the core polarization, and because of the core polarization the spin gyromagnetic factors are quenched. By considering the core polarization effects, a satisfactory agreement is obtained for the computed ground state gK factor, which gives an intrinsic contribution to the magnetic moments. In order to assess the collective contribution to the magnetic moments, the rotational gyromagnetic factors gR have been also calculated within the cranking a...
Nuclei near to the double shell closure at "1"3"2Sn are expected to have very pure si...
So far, the Standard Model of Elementary Particles has not succeeded getting a trustworthy account o...
Magnetic properties of deformed odd-mass nuclei are studied within a nonrelativistic mean-field-plus...
In this paper the Quasiparticle-Phonon Nuclear Model (QPNM), based on QRPA (Quasiparticle Random Pha...
A new microscopic method has been developed in the framework of the Quasiparticle-Phonon Nuclear Mod...
The low-lying magnetic dipole (M1) strength in deformed odd-mass Ho155-169 nuclei is investigated us...
International audienceWhile the ground state configuration is classically determined by the variatio...
Graduation date: 1988The static and dynamic electric quadrupole moments of even-even\ud and odd-A nu...
Magnetic dipole moments of the ground- and excited-states below 600 keV in W-183,W-185, Re-185,Re-18...
In this paper, g(K)-factors of the intrinsic magnetic moments and effective spin gyromagnetic factor...
A method for calculation of the ground-state magnetic moment, effective spin gyromagnetic factors an...
Using the quasiparticle phonon nuclear model (QPNM) and taking into account the spin-spin interactio...
A systematic study of the magnetic properties of deformed odd-neutron Ce137-145 isotopes using the m...
The magnetic moments of (double magic + 1 proton) nuclei having a ''jack-knife'' j = l - s configura...
An experimental value for the g-factor of the proton is derived from the measured magnetic moment of...
Nuclei near to the double shell closure at "1"3"2Sn are expected to have very pure si...
So far, the Standard Model of Elementary Particles has not succeeded getting a trustworthy account o...
Magnetic properties of deformed odd-mass nuclei are studied within a nonrelativistic mean-field-plus...
In this paper the Quasiparticle-Phonon Nuclear Model (QPNM), based on QRPA (Quasiparticle Random Pha...
A new microscopic method has been developed in the framework of the Quasiparticle-Phonon Nuclear Mod...
The low-lying magnetic dipole (M1) strength in deformed odd-mass Ho155-169 nuclei is investigated us...
International audienceWhile the ground state configuration is classically determined by the variatio...
Graduation date: 1988The static and dynamic electric quadrupole moments of even-even\ud and odd-A nu...
Magnetic dipole moments of the ground- and excited-states below 600 keV in W-183,W-185, Re-185,Re-18...
In this paper, g(K)-factors of the intrinsic magnetic moments and effective spin gyromagnetic factor...
A method for calculation of the ground-state magnetic moment, effective spin gyromagnetic factors an...
Using the quasiparticle phonon nuclear model (QPNM) and taking into account the spin-spin interactio...
A systematic study of the magnetic properties of deformed odd-neutron Ce137-145 isotopes using the m...
The magnetic moments of (double magic + 1 proton) nuclei having a ''jack-knife'' j = l - s configura...
An experimental value for the g-factor of the proton is derived from the measured magnetic moment of...
Nuclei near to the double shell closure at "1"3"2Sn are expected to have very pure si...
So far, the Standard Model of Elementary Particles has not succeeded getting a trustworthy account o...
Magnetic properties of deformed odd-mass nuclei are studied within a nonrelativistic mean-field-plus...