Published January 23, 2017
| Version v1
Thesis
Open
Collinear Laser Spectroscopy of Potassium
Contributors
Supervisor (2):
- 1. Heidelberg Max Planck Inst
- 2. Heidelberg U
Description
Nuclear ground-state properties, such as spin, charge radius, and magnetic dipole and electric quadrupole moments are important quantities to describe the nucleus. The comparison of experimental data to shell-model calculations gives insight in the underlying nuclear structure and composition of ground-state wave functions. Spins and charge radii can also be used to test the predictions of state-of-the-art microscopic models. This work contributes to these studies providing new measurements in the region of the nuclear chart around the magic proton number Z = 20. The data have been obtained at the collinear laser spectroscopy setup COLLAPS located at the radioactive-ion-beam facility ISOLDE at CERN. Using bunched-beam laser spectroscopy hyperne structure spectra of the potassium isotopes with mass number A = 48 51 could be recorded for the first time. Ground-state spins and isotope shifts could be deduced for 4851K contributing to the evolution of the d3=2 orbital beyond the shell closure at the magic neutron number N = 28. Charge radii deduced from isotope shifts provide information towards the systematics of the charge radii in the calcium region beyond the N = 28 shell closure. While theoretical calculations predict the correct spins, the charge radii still provide a challenge even to the newest relativistic mean-eld and coupled cluster models.
Files
CERN-THESIS-2013-429.pdf
Files
(6.8 MB)
| Name | Size | Download all |
|---|---|---|
|
md5:5508ef67193784b282b3d041661eb85d
|
6.8 MB | Preview Download |
Additional details
Additional titles
- Subtitle
- Nuclear Charge Radii beyond N = 28
Identifiers
- CDS
- 2243051
- CDS Report Number
- CERN-THESIS-2013-429
CERN
- Department
- EP - Experimental Physics Department
- Programme
- No program participation
- Accelerator
- CERN ISOLDE
- Experiment