An Asymmetric Model Position Dependent Mass: Quantum Mechanical Study

Author:

Rath Biswanath1,Mallick Pravanjan1,Asad Jihad2ORCID,Wannan Rania3,Jarrar Rabab2,Shanak Hussein2

Affiliation:

1. Department of Physics, Maharaja Sriram Chandra Bhanja Deo University, Takatpur, Baripada 757003, Odisha, India

2. Department of Physics, Faculty of Applied Sciences, Palestine Technical University—Kadoorie, Tulkarm P305, Palestine

3. Department of Applied Mathematics, Faculty of Applied Sciences, Palestine Technical University—Kadoorie, Tulkarm P305, Palestine

Abstract

We propose an asymmetric model position dependent mass and study its quantum mechanical behaviour on different potentials such as harmonic oscillator potential, double well potential, Gaussian single well potential and triangular single well model potential. It is observed from our study that the model asymmetric mass works well for weak coupling preserving the symmetric phase portrait. However, the dominance of asymmetric feature of the mass in the system clearly visible for higher values of the constant associated with the mass. Though, both position dependent mass and potential have significant role in controlling the spectral feature of the system, one may dominate over other for certain cases.

Publisher

MDPI AG

Subject

Geometry and Topology,Logic,Mathematical Physics,Algebra and Number Theory,Analysis

Reference36 articles.

1. Asymmetric variation of a finite mass harmonic like oscillator;Asad;Results Phys.,2020

2. Position-dependent finite symmetric mass harmonic like oscillator: Classical and quantum mechanical study;Rath;Open Phys.,2021

3. Exact solutions of an exponential type position dependent mass problem;Dong;Results Phys.,2022

4. A generalized self-consistent approach to study position-dependent mass in semiconductors organic heterostructures and crystalline impure materials;Phys. E,2020

5. A new approach to Schrodinger equation with position-dependent mass and its implications in quantum dots and semiconductors;J. Phys. Chem. Sol.,2020

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