The Generalized Fractional NU Method for the Diatomic Molecules in the
Deng-Fan Model
- URL: http://arxiv.org/abs/2203.04125v2
- Date: Tue, 8 Nov 2022 09:38:57 GMT
- Title: The Generalized Fractional NU Method for the Diatomic Molecules in the
Deng-Fan Model
- Authors: M. Abu-Shady, E. M. Khokha, and T. A. Abdel-Karim
- Abstract summary: A solution of the fractional N-dimensional radial Schrodinger equation with the Deng-Fan potential is investigated.
The analytical formulas of energy eigenvalues and corresponding eigen functions for the Deng-Fan potential are generated.
- Score: 0.0
- License: http://creativecommons.org/licenses/by/4.0/
- Abstract: A solution of the fractional N-dimensional radial Schrodinger equation with
the Deng-Fan potential is investigated by the generalized fractional NU method.
The analytical formulas of energy eigenvalues and corresponding eigen functions
for the Deng-Fan potential are generated. Furthermore, the current results are
applied to several diatomic molecules for the Deng-Fan potential as well as the
shifted Deng Fan potential. For both the Deng-Fan potential and its shifted
potential, the effect of the fractional parameter on the energy levels of
various diatomic molecules is examined numerically and graphically. We found
that the energy eigenvalues are gradually improved when the fractional
parameter increases. The energy spectra of various diatomic molecules are also
evaluated in three-dimensional space and higher dimensions. It is worthy to
note that the energy spectrum raises as the number of dimensions increases. In
addition, the dependence of the energy spectra of the Deng-Fan potential and
its shifted potential on the reduced mass, screening parameter, equilibrium
bond length, rotational and vibrational quantum numbers is illustrated. To
validate our findings, we estimate the energy levels of the Deng-Fan potential
and shifted Deng-Fan potential at the classical case for various diatomic
molecules and found that they are entirely compatible with earlier studies.
Related papers
- Unveiling the Quantum Toroidal Dipole in Nanosystems: Quantization,
Interaction Energy, and Measurement [44.99833362998488]
We investigate a quantum particle confined to a toroidal surface in the presence of a filiform current along the system's rotational axis.
Our analysis reveals that the interaction between the particle and the current induces a non-zero toroidal dipole in the particle's stationary states.
arXiv Detail & Related papers (2024-01-26T13:31:32Z) - Energetics of the dissipative quantum oscillator [22.76327908349951]
We discuss some aspects of the energetics of a quantum Brownian particle placed in a harmonic trap.
Based on the fluctuation-dissipation theorem, we analyze two distinct notions of thermally-averaged energy.
We generalize our analysis to the case of the three-dimensional dissipative magneto-oscillator.
arXiv Detail & Related papers (2023-10-05T15:18:56Z) - Message-Passing Neural Quantum States for the Homogeneous Electron Gas [41.94295877935867]
We introduce a message-passing-neural-network-based wave function Ansatz to simulate extended, strongly interacting fermions in continuous space.
We demonstrate its accuracy by simulating the ground state of the homogeneous electron gas in three spatial dimensions.
arXiv Detail & Related papers (2023-05-12T04:12:04Z) - Eigen Solution and Thermodynamic Properties of Manning Rosen Plus
Exponential Yukawa Potential [0.0]
We obtained analytical bound state solution of the Schr"odinger equation with Manning Rosen plus Yukawa Potential.
The energy eigen equation was determined and presented in compact form.
arXiv Detail & Related papers (2023-03-21T11:56:32Z) - Equivariant Energy-Guided SDE for Inverse Molecular Design [35.50806745435793]
EEGSDE is a flexible framework for controllable 3D molecule generation under the guidance of an energy function.
EEGSDE is able to generate molecules with multiple target properties by combining the corresponding energy functions linearly.
arXiv Detail & Related papers (2022-09-30T12:10:15Z) - Ro-vibrational energy and thermodynamic properties of molecules
subjected to Deng-Fan potential through an improved approximation [0.0]
A modified Pekeris-type approximation is proposed for the centrifugal term.
The effect of quantum correction on partition function and thermodynamic properties is discussed.
arXiv Detail & Related papers (2022-05-19T14:32:19Z) - Dispersive readout of molecular spin qudits [68.8204255655161]
We study the physics of a magnetic molecule described by a "giant" spin with multiple $d > 2$ spin states.
We derive an expression for the output modes in the dispersive regime of operation.
We find that the measurement of the cavity transmission allows to uniquely determine the spin state of the qudits.
arXiv Detail & Related papers (2021-09-29T18:00:09Z) - Quantum dynamics of a one degree-of-freedom Hamiltonian saddle-node
bifurcation [0.0]
We study the quantum dynamics of a one degree-of-freedom (DOF) Hamiltonian that is a normal form for a saddle node bifurcation of equilibrium points in phase space.
The main focus is to evaluate the effect of the depth of the well on the quantum dynamics.
arXiv Detail & Related papers (2021-07-02T11:30:17Z) - New Generalized Morse-Like Potential for Studying the Atomic Interaction
in Diatomic Molecules [0.0]
We obtain the approximate analytical solutions of the radial Schrodinger equation for the New Generalized Morse-Like Potential in arbitrary dimensions.
The rotational-vibrational energy eigenvalues for some diatomic molecules are computed with the aid of some spectroscopic parameters.
arXiv Detail & Related papers (2020-12-04T13:41:12Z) - Thermal Properties of Deng-Fan-Eckart Potential model using Poisson
Summation Approach [0.0]
The Deng-Fan-Eckart potential is as good as the Morse potential in studying atomic interaction in diatomic molecules.
The thermodynamic properties of some selected diatomic molecules(H2, CO, and ScN ) were obtained using Poisson summation method.
arXiv Detail & Related papers (2020-09-19T20:15:06Z) - Probing eigenstate thermalization in quantum simulators via
fluctuation-dissipation relations [77.34726150561087]
The eigenstate thermalization hypothesis (ETH) offers a universal mechanism for the approach to equilibrium of closed quantum many-body systems.
Here, we propose a theory-independent route to probe the full ETH in quantum simulators by observing the emergence of fluctuation-dissipation relations.
Our work presents a theory-independent way to characterize thermalization in quantum simulators and paves the way to quantum simulate condensed matter pump-probe experiments.
arXiv Detail & Related papers (2020-07-20T18:00:02Z)
This list is automatically generated from the titles and abstracts of the papers in this site.
This site does not guarantee the quality of this site (including all information) and is not responsible for any consequences.