Heavy-Light Mesons in the Nonrelativistic Quark Model Using Laplace Transformation Method

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Date

2018

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Article

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HINDAWI LTD

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ADVANCES IN HIGH ENERGY PHYSICS;

Doi

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Abstract

An analytic solution of the N-dimensional radial Schrodinger equation with the combination of vector and scalar potentials via the Laplace transformation method (LTM) is derived. The current potential is extended to encompass the spin hyperfine, spin-orbit, and tensor interactions. The energy eigenvalues and the corresponding eigenfunctions have been obtained in the N-dimensional space. The present results are employed to study the different properties of the heavy-light mesons (HLM). The masses of the scalar, vector, pseudoscalar, and pseudovector for B, B-s, D, and D-s mesons have been calculated in the three-dimensional space. The effect of the dimensional number space is discussed on the masses of the HLM. We observed that the meson mass increases with increasing dimensional space. The decay constants of the pseudoscalar and vector mesons have been computed. In addition, the leptonic decay widths and branching ratio for the B+, D+, and B-s(+) mesons have been studied. Therefore, the used method with the current potential gives good results which are in good agreement with experimental data and are improved in comparison with recent theoretical studies.

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Accession Number: WOS:000439790500001

Keywords

University for EIGENVALUES, POTENTIALS, BOUND-STATES, WAVE-FUNCTION, 1/N EXPANSION, HYDROGEN-ATOM, RELATIVISTIC TREATMENT, DECAY CONSTANTS, DIMENSIONAL SCHRODINGER-EQUATION

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