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- W4220886532 abstract "The Schrodinger equation for radial modified Eckart potential was investigated with the influence of minimal length effect using AIM. By introducing the concept of q-deformed potential and the new approximate wave function to the equation caused it reduced to ordinary Schrodinger equation with modified Poschl-Teller potential. The Asymptotic Iteration Method (AIM) was used to find the solution of the radial Schrodinger equation and to get the energy eigenvalue equation and radial wave function that was used to determine the Renyi entropy of the quantum system and the application to black hole The energy spectra result showed that the increase of radial and angular quantum numbers (n, L), potential width (γ, minimal length parameter (αML), caused the increase of energy. The radial quantum number and the potential width parameter had the most effect to the wave functions. The increase of radial quantum number n and potential width y caused the decrease of Renyi entropy SR, mass parameter M, temperature Tr, and heat capacity Cr, but the increase of αML caused the increase of Renyi entropy SR, mass parameter M, temperature Tr, and heat capacity Cr." @default.
- W4220886532 created "2022-04-03" @default.
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- W4220886532 date "2022-01-01" @default.
- W4220886532 modified "2023-10-17" @default.
- W4220886532 title "Analysis of non-relativistic energy, wave function, and its application in black hole with minimal length formalism" @default.
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