Bc and Heavy Meson Spectroscopy in the Local Approximation of the SCHRÖDINGER Equation with Relativistic Kinematics

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Journal Title, Volume, Page: 
International Journal of Modern Physics A, Volume 20, Issue 17, pp. 4035-4054
Year of Publication: 
2005
Authors: 
Sameer M. Ikhdair
Department of Electrical and Electronics Engineering, Near East University, Nicosia, North Cyprus, Mersin 10, Turkey
Current Affiliation: 
Department of Physics, An-Najah National University, Nablus, Palestine
Ramazan Sever
Department of Physics, Middle East Technical University, Ankara, Turkey
Preferred Abstract (Original): 
We present bound state masses of the self-conjugate and non-self-conjugate mesons in the context of the Schrödinger equation taking into account the relativistic kinematics and the quark spins. We apply the usual interaction by adding the spin dependent correction. The hyperfine splittings for the 2S charmonium and 1S bottomonium are calculated. The pseudoscalar and vector decay constants of the Bc meson and the unperturbed radial wave function at the origin are also calculated. We have obtained a local equation with a complete relativistic corrections to a class of three attractive static interaction potentials of the general form V(r) = -Ar+κrβ+V0, with β = 1, 1/2, 3/4 which can also be decomposed into scalar and vector parts in the form VV(r) = -Ar+(1-ɛ)κrβ and VS(r) = ɛκrβ+V0 where 0≤ɛ≤1. The energy eigenvalues are carried out up to the third order approximation using the shifted large-N-expansion technique.
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