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Analytic response relativistic coupled-cluster theory: the first application to indium isotope shifts
- Source :
- Sahoo, B K, Vernon, A R, Garcia Ruiz, R F, Binnersley, C L, Billowes, J, Bissell, M L, Cocolios, T E, Farooq-Smith, G J, Flanagan, K T, Gins, W, de Groote, R P, Koszorús, Á, Neyens, G, Lynch, K M, Parnefjord-Gustafsson, F, Ricketts, C M, Wendt, K D A, Wilkins, S G & Yang, X F 2020, ' Analytic response relativistic coupled-cluster theory: the first application to indium isotope shifts ', New Journal of Physics, vol. 22, no. 1, pp. 012001 . https://doi.org/10.1088/1367-2630/ab66dd, New Journal of Physics
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Abstract
- With increasing demand for accurate calculation of isotope shifts of atomic systems for fundamental and nuclear structure research, an analytic energy derivative approach is presented in the relativistic coupled-cluster theory framework to determine the atomic field shift and mass shift factors. This approach allows the determination of expectation values of atomic operators, overcoming fundamental problems that are present in existing atomic physics methods, i.e. it satisfies the Hellmann-Feynman theorem, does not involve any non-terminating series, and is free from choice of any perturbative parameter. As a proof of concept, the developed analytic response relativistic coupled-cluster theory has been applied to determine mass shift and field shift factors for different atomic states of indium. High-precision isotope-shift measurements of $^{104-127}$In were performed in the 246.8-nm (5p $^2$P$_{3/2}$ $\rightarrow$ 9s $^2$S$_{1/2}$) and 246.0-nm (5p $^2$P$_{1/2}$ $\rightarrow$ 8s $^2$S$_{1/2}$) transitions to test our theoretical results. An excellent agreement between the theoretical and measured values is found, which is known to be challenging in multi-electron atoms. The calculated atomic factors allowed an accurate determination of the nuclear charge radii of the ground and isomeric states of the $^{104-127}$In isotopes, providing an isotone-independent comparison of the absolute charge radii.<br />Comment: Submitted
- Subjects :
- CHARGE RADII
Field (physics)
Atomic Physics (physics.atom-ph)
Physics, Multidisciplinary
Other Fields of Physics
FOS: Physical sciences
General Physics and Astronomy
indium
Expectation value
Electron
nucl-ex
NM
physics.atom-ph
01 natural sciences
Effective nuclear charge
Physics - Atomic Physics
010305 fluids & plasmas
0103 physical sciences
Nuclear Physics - Experiment
Nuclear Experiment (nucl-ex)
010306 general physics
Nuclear Experiment
analytic response
Physics
Science & Technology
SPECTROSCOPY
ab initio
Nuclear structure
Charge (physics)
specific mass shift
isotope shift
Coupled cluster
coupled cluster
Physical Sciences
laser spectroscopy
IONIZATION
LASER
Atomic number
Atomic physics
TRANSITION
Subjects
Details
- Language :
- English
- ISSN :
- 13672630, 09534075, 17426596, 1054660X, 00223700, and 16741137
- Volume :
- 22
- Issue :
- 1
- Database :
- OpenAIRE
- Journal :
- New Journal of Physics
- Accession number :
- edsair.doi.dedup.....daf2f8a7e55a721eb6fc299a311a7095
- Full Text :
- https://doi.org/10.1088/1367-2630/ab66dd