Solution of the Schrödinger equation with inversely quadratic Yukawa potential (IQYP) plus Kratzer-Fues (KFP) potential using the WKB quantum mechanical formalism

The main objective of this research work is theoretical investigate the bound state solutions of the non-relativistic Schrödinger equation with a mixed potential composed of the Inversely Quadratic Yukawa/Attractive Coulomb potential plus a Modified Kratzer potential (IQYCKFP) by utilizing the Wentz...

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Main Authors: Benedict Iserom Ita, Hitler Louis, Nelson Nzeata-Ibe
Format: Article
Language:English
Published: Universidade Estadual Paulista 2019-07-01
Series:Eclética Química
Online Access:https://revista.iq.unesp.br/ojs/index.php/ecletica/article/view/1010
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author Benedict Iserom Ita
Hitler Louis
Nelson Nzeata-Ibe
author_facet Benedict Iserom Ita
Hitler Louis
Nelson Nzeata-Ibe
author_sort Benedict Iserom Ita
collection DOAJ
description The main objective of this research work is theoretical investigate the bound state solutions of the non-relativistic Schrödinger equation with a mixed potential composed of the Inversely Quadratic Yukawa/Attractive Coulomb potential plus a Modified Kratzer potential (IQYCKFP) by utilizing the Wentzel-Kramers-Brillouin (WKB) quantum theoretical formalism. The energy eigenvalues and its associated wave functions have successfully been obtained sequel to certain diatomic molecules includes; HCL, HBr, LiH.
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spelling doaj.art-99a8c32e6b3b46788e42c9a2f3575d312022-12-22T02:07:09ZengUniversidade Estadual PaulistaEclética Química1678-46182019-07-01443505510.26850/1678-4618eqj.v44.3.2019.p50-551010Solution of the Schrödinger equation with inversely quadratic Yukawa potential (IQYP) plus Kratzer-Fues (KFP) potential using the WKB quantum mechanical formalismBenedict Iserom Ita0Hitler Louis1Nelson Nzeata-Ibe2Physical/Theoretical Chemistry Research Group, Department of Pure and Applied Chemistry University of Calabar, Calabar Cross River State, NigeriaNational Centre for Nanoscience and Technology, Chinese Academy of Sciences, Beijing, ChinaPhysical/Theoretical Chemistry Research Group, Department of Pure and Applied Chemistry University of Calabar, Calabar Cross River State, NigeriaThe main objective of this research work is theoretical investigate the bound state solutions of the non-relativistic Schrödinger equation with a mixed potential composed of the Inversely Quadratic Yukawa/Attractive Coulomb potential plus a Modified Kratzer potential (IQYCKFP) by utilizing the Wentzel-Kramers-Brillouin (WKB) quantum theoretical formalism. The energy eigenvalues and its associated wave functions have successfully been obtained sequel to certain diatomic molecules includes; HCL, HBr, LiH.https://revista.iq.unesp.br/ojs/index.php/ecletica/article/view/1010
spellingShingle Benedict Iserom Ita
Hitler Louis
Nelson Nzeata-Ibe
Solution of the Schrödinger equation with inversely quadratic Yukawa potential (IQYP) plus Kratzer-Fues (KFP) potential using the WKB quantum mechanical formalism
Eclética Química
title Solution of the Schrödinger equation with inversely quadratic Yukawa potential (IQYP) plus Kratzer-Fues (KFP) potential using the WKB quantum mechanical formalism
title_full Solution of the Schrödinger equation with inversely quadratic Yukawa potential (IQYP) plus Kratzer-Fues (KFP) potential using the WKB quantum mechanical formalism
title_fullStr Solution of the Schrödinger equation with inversely quadratic Yukawa potential (IQYP) plus Kratzer-Fues (KFP) potential using the WKB quantum mechanical formalism
title_full_unstemmed Solution of the Schrödinger equation with inversely quadratic Yukawa potential (IQYP) plus Kratzer-Fues (KFP) potential using the WKB quantum mechanical formalism
title_short Solution of the Schrödinger equation with inversely quadratic Yukawa potential (IQYP) plus Kratzer-Fues (KFP) potential using the WKB quantum mechanical formalism
title_sort solution of the schrodinger equation with inversely quadratic yukawa potential iqyp plus kratzer fues kfp potential using the wkb quantum mechanical formalism
url https://revista.iq.unesp.br/ojs/index.php/ecletica/article/view/1010
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