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Hassan Hassanabadi

Researcher at University of Shahrood

Publications -  523
Citations -  6662

Hassan Hassanabadi is an academic researcher from University of Shahrood. The author has contributed to research in topics: Dirac equation & Wave function. The author has an hindex of 35, co-authored 458 publications receiving 5202 citations. Previous affiliations of Hassan Hassanabadi include Islamic Azad University & University of Hradec Králové.

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DKP equation in a rotating frame with magnetic cosmic string background

TL;DR: In this paper, the covariant Duffin-Kemmer-Petiau (DKP) equation in the curved space-time of a cosmic string was studied in the presence of a magnetic vector potential in the Coulomb gauge and the analytical solutions for the modified spectrum of the system were reported.
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Dirac fermions in Som–Raychaudhuri space-time with scalar and vector potential and the energy momentum distributions

TL;DR: In this paper, the Dirac equation was investigated in the presence of scalar and vector potential in a class of flat Godel-type space-time called Som-Raychaudhuri space time by using the methods quasi-exactly solvable (QES) differential equations and the Nikiforov Uvarov (NU) form.
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Nonrelativistic Shannon information entropy for Kratzer potential

TL;DR: In this article, the Shannon information entropy is investigated within the nonrelativistic framework and the Kratzer potential is considered as the interaction and the problem is solved in a quasi-exact analytical manner to discuss the ground and first excited states.
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Systematic study of α-decay half-lives using Royer and related formula

TL;DR: In this paper, the alpha decay half-lives of 356 isotopes were studied using the Royer and related Formula and are compared with experimental data, and the results show that the predicted half-life matches well with the experimental data over a wide range for each (Z, N ) parity of the parent nuclei.
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Approximate arbitrary-state solutions of Dirac equation for modified deformed Hylleraas and Modified Eckart potentials by the NU method

TL;DR: It is inquired into spin and pseudospin symmetries of Dirac equation under modified deformed Hylleraas and modified Eckart potential via a Pekeris approximation and the Nikiforov-Uvarov technique.