2018
DOI: 10.1103/physrevc.97.064312
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Magnetic dipole moments, electric quadrupole moments, and electron scattering form factors of neutron-rich sdpf cross-shell nuclei

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Cited by 23 publications
(24 citation statements)
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“…As shown in Fig. 4, B, the matching between theoretical and experimental results has found by using oscillator length parameter = 1.62 fm, and effective nucleon factors as = 5.05, = −3.0, = 1, = 0 [18,30], whereas the magnetic form factors depend on the nucleon factors.…”
Section: Electromagnetic Transitions and Form Factorsmentioning
confidence: 54%
See 1 more Smart Citation
“…As shown in Fig. 4, B, the matching between theoretical and experimental results has found by using oscillator length parameter = 1.62 fm, and effective nucleon factors as = 5.05, = −3.0, = 1, = 0 [18,30], whereas the magnetic form factors depend on the nucleon factors.…”
Section: Electromagnetic Transitions and Form Factorsmentioning
confidence: 54%
“…The scattering form factors describe the electromagnetic properties of the nucleus. Inelastic scattering form factors represent a striking feature which can be investigated theoretically and experimentally [18]. From this, we can verify the precision of the PSDPF interaction.…”
Section: Introductionmentioning
confidence: 69%
“…The next example we consider is the isotonic chain N = 25, including the spherical nucleus 45 Ca (Z = 40), and the prolate isotones 47 Ti and 49 Cr. 45 Ca has a 7/2 − ground state that corresponds to the f 7/2 spherical shell. 47 Ti and 49 Cr have 5/2 − with the odd neutron in the [312]5/2 state.…”
Section: N = 25 Isotonesmentioning
confidence: 99%
“…Kuo and Brown proposed the first comprehensive technique in the 1960s, using the Hamada-Johnston potential 5 . In model space calculations, Radhi et al [6][7][8][9] showed that it is advisable to include CP effect in form-factors for nuclei in the beginning of p-shell and the end of sd-shell. F. A. Majeed et al [10][11][12] demonstrated that form factor calculations based on large-basis of the shell model to study the nuclei in the p, sd and fp shells considering the contribution of high-energy configurations beyond the p, sd and fp shell space model space denoted as the core polarization effects.…”
Section: Introductionmentioning
confidence: 99%