2019
DOI: 10.1088/1742-6596/1153/1/012110
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On the motion of non-relativistic particle in doubled ring-shaped Coulomb oscillator potential within cosmic string framework

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(1 citation statement)
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“…On the other hand, in the non-relativistic limit, studies in the background of topological defect produced by a cosmic string are quantum dynamics of particle [42], quantum particles interacting with potentials [43,44], particles interacting with Coulomb and Harmonic oscillator potentials [45], quantum system of a neutron in a mean-field Woods-Saxon potential [46], confinement effects of Aharonov-Bohm (AB) flux and magnetic fields with screened modified Kratzer potential [47] and Hulthen potential [48], particles interacts with Coulomb ring shaped potential [49], particles confined by ABflux and magnetic fields with Yukawa potential [50,51], quantum motions of particles with trigonometric non-central potential [52], with pseudo Coulomb potential plus a new improved ring-shaped [53], quantum motions of particles with Pöschl-Teller double-ring shaped Coulomb and double-ring shaped oscillator potentials [54], quantum motions of particles with doubled ring-shaped Coulomb oscillator potential [55], solution of d-dimension time independent cosmic string equation for non-central potentials (Rosen-Morse, scarf II and scarf I) [56] and for Hyperbolic Scarf Plus Pöschl-Teller and Manning-Rosen Potentials [57], and quantum particles subjected to a magnetic field in a spinning cosmic string space-time [58]. In addition, the nonrelativistic wave equation with different potential in the background of topological defect produced by a point-like global monopole have been studied in [59][60][61][62][63].…”
Section: Introductionmentioning
confidence: 99%
“…On the other hand, in the non-relativistic limit, studies in the background of topological defect produced by a cosmic string are quantum dynamics of particle [42], quantum particles interacting with potentials [43,44], particles interacting with Coulomb and Harmonic oscillator potentials [45], quantum system of a neutron in a mean-field Woods-Saxon potential [46], confinement effects of Aharonov-Bohm (AB) flux and magnetic fields with screened modified Kratzer potential [47] and Hulthen potential [48], particles interacts with Coulomb ring shaped potential [49], particles confined by ABflux and magnetic fields with Yukawa potential [50,51], quantum motions of particles with trigonometric non-central potential [52], with pseudo Coulomb potential plus a new improved ring-shaped [53], quantum motions of particles with Pöschl-Teller double-ring shaped Coulomb and double-ring shaped oscillator potentials [54], quantum motions of particles with doubled ring-shaped Coulomb oscillator potential [55], solution of d-dimension time independent cosmic string equation for non-central potentials (Rosen-Morse, scarf II and scarf I) [56] and for Hyperbolic Scarf Plus Pöschl-Teller and Manning-Rosen Potentials [57], and quantum particles subjected to a magnetic field in a spinning cosmic string space-time [58]. In addition, the nonrelativistic wave equation with different potential in the background of topological defect produced by a point-like global monopole have been studied in [59][60][61][62][63].…”
Section: Introductionmentioning
confidence: 99%