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Eigenfunction, uncertainties and thermal properties of the Schrodinger equation with Screened modified Kratzer potential for diatomic molecules.
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In this work, we proposed a screened modified Krazer potential and use
the newly proposed Nikiforov-Uvarov-Functional Analysis (NUFA) method to
obtain the energy spectrum and the corresponding wave function. With the
obtained energy spectrum, we studied the numerical results for some
selected diatomic molecules and our results are in good agreement with
other analytical method. We also evaluated the vibrational partition
function for , and diatomic molecules via the Euler–Maclaurin approach
and other thermodynamic functions such as free energy, entropy, mean
energy and specific heat Capacity. The expectations values of and are
also calculated numerically for different diatomic molecules using the
normalized wave function for the two low lying states corresponding to
the ground and first excited states. Our numerical results for the
selected diatomic molecules validate the Heisenberg uncertainty
relation, .
Title: Eigenfunction, uncertainties and thermal properties of the Schrodinger equation with Screened modified Kratzer potential for diatomic molecules.
Description:
In this work, we proposed a screened modified Krazer potential and use
the newly proposed Nikiforov-Uvarov-Functional Analysis (NUFA) method to
obtain the energy spectrum and the corresponding wave function.
With the
obtained energy spectrum, we studied the numerical results for some
selected diatomic molecules and our results are in good agreement with
other analytical method.
We also evaluated the vibrational partition
function for , and diatomic molecules via the Euler–Maclaurin approach
and other thermodynamic functions such as free energy, entropy, mean
energy and specific heat Capacity.
The expectations values of and are
also calculated numerically for different diatomic molecules using the
normalized wave function for the two low lying states corresponding to
the ground and first excited states.
Our numerical results for the
selected diatomic molecules validate the Heisenberg uncertainty
relation, .
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