2017
DOI: 10.1007/s12648-017-1085-0
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Energy spectra of a two dimensional parabolic quantum dot in an external field

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Cited by 15 publications
(2 citation statements)
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“…To improve the behavior of the potential in the region as đť‘ź → 0 and provide better confinement, two terms are added to the Cornell potential: the inversely quadratic potential (the term D/r 2 ) and the harmonic oscillator term. The KIPQ potential has also been used to compute the energy eigenvalue spectra of quantum dot systems [39,40] and diatomic molecules [41]. Recently, Khokha et al analytically determined meson mass spectra by solving the N-dimensional radial Schrödinger equation with the KIPQ potential using the exact iteration method [42].…”
Section: Introductionmentioning
confidence: 99%
“…To improve the behavior of the potential in the region as đť‘ź → 0 and provide better confinement, two terms are added to the Cornell potential: the inversely quadratic potential (the term D/r 2 ) and the harmonic oscillator term. The KIPQ potential has also been used to compute the energy eigenvalue spectra of quantum dot systems [39,40] and diatomic molecules [41]. Recently, Khokha et al analytically determined meson mass spectra by solving the N-dimensional radial Schrödinger equation with the KIPQ potential using the exact iteration method [42].…”
Section: Introductionmentioning
confidence: 99%
“…Consequently, many researchers in this area make it their main aim to generate solutions for the SE with any available potential model [6][7]. Some of the potential models includes pseudoharmonic potential [8][9][10], Kratzer potential [11][12], Coulomb potential [13][14][15], and many more. In the recent time, these potential models are modified either by addition of screening parameter as in the case of screened Kratzer potential [16][17], screened Coulomb potential [18] or adding two or more potentials together as in the case of modified Kratzer plus screened Coulomb potential [19][20].…”
Section: Introductionmentioning
confidence: 99%