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Nicholas Jobbitt
Nicholas Jobbitt
Verified email at pg.canterbury.ac.nz
Title
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Cited by
Year
Energy transfer between Sm3+ ions in Y2SiO5 crystals
NL Jobbitt, JPR Wells, MF Reid
Journal of Luminescence 224, 117302, 2020
122020
Transferability of Crystal-Field Parameters for Rare-Earth Ions in Y2SiO5 Tested by Zeeman Spectroscopy
NL Jobbitt, SJ Patchett, Y Alizadeh, MF Reid, JPR Wells, SP Horvath, ...
Physics of the Solid State 61, 780-784, 2019
122019
Prediction of optical polarization and high-field hyperfine structure via a parametrized crystal-field model for low-symmetry centers in -doped
NL Jobbitt, JPR Wells, MF Reid, SP Horvath, P Goldner, A Ferrier
Physical Review B 104 (15), 155121, 2021
102021
Raman heterodyne determination of the magnetic anisotropy for the ground and optically excited states of doped with
NL Jobbitt, JPR Wells, MF Reid, JJ Longdell
Physical Review B 103 (20), 205114, 2021
52021
Zeeman and laser site selective spectroscopy of C1 point group symmetry Sm3+ centres in Y2SiO5: a parametrized crystal-field analysis for the 4f 5 configuration
NL Jobbitt, JPR Wells, MF Reid
Journal of Physics: Condensed Matter 34 (32), 325502, 2022
22022
Laser site-selective spectroscopy, Zeeman spectroscopy and crystal-field analysis of yttrium orthosilicate doped with Sm3+ and Er3+ ions
NL Jobbitt
University of Canterbury, 2021
22021
Reproduction of the electronic and magnetic structure of the low symmetry sites of YSiO doped with Sm via a parameterized crystal-field model
NL Jobbitt, JPR Wells, MF Reid
arXiv preprint arXiv:2206.10597, 2022
2022
SPECTROSCOPY AND ELECTRONIC STRUCTURE OF RARE-EARTH DOPED CRYSTALS FOR QUANTUM INFORMATION STUDIES
NL Jobbitt, MF Reid, JPR Wells, JJ Longdell
12th Annual Dodd-Walls Centre Symposium University of Otago 28th January–1st …, 0
TRANSFERABILITY OF CRYSTAL-FIELD PARAMETERS FOR RARE-EARTH IONS IN Y2SIO5 TESTED BY ZEEMAN AND LASER SPECTROSCOPY
MF Reid, NL Jobbitt, SJ Patchett, Y Alizadeh, JPR Wells, SP Horvath, ...
12th Annual Dodd-Walls Centre Symposium University of Otago 28th January–1st …, 0
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