Properties of an particle in a Bohrium Nucleus under the Generalized Symmetric Woods-Saxon Potential
The energy eigenvalues and the wave functions of an particle in a Bohrium nucleus were calculated by solving Schrödinger equation for Generalized Symmetric Woods-Saxon potential. Using the energy spectrum by excluding and including the quasi-bound eigenvalues, entropy, internal energy, Helmholtz energy, and specific heat, as functions of reduced temperature were calculated. Stability and emission characteristics are interpreted in terms of the wave and thermodynamic functions. The kinetic energy of a decayed particle was calculated using the quasi-bound states, which is found close to the experimental value.