Results 21 to 30 of about 1,755 (185)
Bound state calculations for Hulthén–Hellmann type potential by improved asymptotic iteration method
Coulomb and Hulthén–Hellmann potential versus r for A = 0.002, B = 2, C = 1, α = 0.001 Abstract In this study, some nonrelativistic energy eigenvalues of Hulthén–Hellmann type interaction were calculated using the improved asymptotic iteration method (improved AIM) by applying the Greene–Aldrich approach for the inverse square term of the potential ...
Zeynel Yalçın
wiley +1 more source
Fractional Effective Quark‐Antiquark Interaction in Symplectic Quantum Mechanics
Considering the formalism of symplectic quantum mechanics, we investigate a two‐dimensional nonrelativistic strong interacting system, describing a bound heavy quark‐antiquark state. The potential has a linear component that is analyzed in the context of generalized fractional derivatives.
R. R. Luz +5 more
wiley +1 more source
Quark‐Antiquark Effective Potential in Symplectic Quantum Mechanics
In this paper, we study within the structure of Symplectic Quantum Mechanics a bidimensional nonrelativistic strong interaction system which represent the bound state of heavy quark‐antiquark, where we consider a Cornell potential which consists of Coulomb‐type plus linear potentials. First, we solve the Schrödinger equation in the phase space with the
Renato Luz +6 more
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Analytic study of thermal properties and masses of heavy mesons with quarkonium potential
A Quarkonium potential is solved within the nonrelativistic regime using the Nikiforov-Uvarov method to obtain the energy spectrum and the wave function in terms of Laguerre polynomials.
E.P. Inyang +6 more
doaj +1 more source
Approximate Solutions, Thermal Properties, and Superstatistics Solutions to Schrödinger Equation
In this work, we apply the parametric Nikiforov‐Uvarov method to obtain eigensolutions and total normalized wave function of Schrödinger equation expressed in terms of Jacobi polynomial using Coulomb plus Screened Exponential Hyperbolic Potential (CPSEHP), where we obtained the probability density plots for the proposed potential for various orbital ...
Ituen Okon +8 more
wiley +1 more source
In this study, it is intended to show an alternative method to derive the wave function of a single electron as solutions of the Schrodinger equation.
Yacobus Yulianto, Zaki Su'ud
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We investigate the nonrelativistic magnetic effect on the energy spectra, expectation values of some quantum mechanical observables, and diamagnetic susceptibility for some diatomic molecules bounded by the isotropic oscillator plus inverse quadratic potential.
O. J. Oluwadare +7 more
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On Potentials Integrated by the Nikiforov-Uvarov Method
51 pages, 19 tables; 3 figures; complementary Mathematica notebook is available from the authors; It is also posted on Wolfram community https://community.wolfram.com/groups/-/m/t ...
Ellis, Lina +3 more
openaire +2 more sources
The relativistic solutions of the Klein‐Gordon equation comprising an interaction of the generalized inversely quadratic Yukawa potential mixed linearly with the hyperbolic Schiöberg molecular potential is achieved employing the idea of parametric Nikiforov‐Uvarov and the Greene‐Aldrich approximation scheme.
Muhammad Roshanzamir, Elias C. Vagenas
wiley +1 more source
Analytical Bound-State solution of the Schrodinger equation for the morse potential within the Nikiforov-Uvarov method [PDF]
The Morse potential has important and significance rule to describe the diatomic molecule energy and structure. However there is no any analytical solution for Schrodinger equation with this potential without approximation, therefore other ways such as ...
Enayatolah Yazdankish
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