Modifications in the photoionization cross-section of a quantum dot with position-dependent effective mass

Fuente: arXiv
Saved in:
Bibliographic Details
Main Authors: Pereira, Carlos Magno O., Assafrão, Denise, Azevedo, Frankbelson dos S., de Lima, A. G., Filgueiras, Cleverson, Silva, Edilberto O.
Format: Preprint
Published: 2025
Subjects:
Online Access:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866911230486118400
author Pereira, Carlos Magno O.
Assafrão, Denise
Azevedo, Frankbelson dos S.
de Lima, A. G.
Filgueiras, Cleverson
Silva, Edilberto O.
author_facet Pereira, Carlos Magno O.
Assafrão, Denise
Azevedo, Frankbelson dos S.
de Lima, A. G.
Filgueiras, Cleverson
Silva, Edilberto O.
contents In this work, we investigate the photoionization cross-section of an electron confined in a quantum dot, considering the position-dependent variation of the effective mass through the parameter $γ$. We used a theoretical model based on the Schrödinger equation, in which $γ$ influences the energy levels and wave functions through an effective potential obtained from the harmonic oscillator potential - which, in the limit $γ= 0$, reduces to the original harmonic oscillator potential. Furthermore, we compared the modifications in the photoionization cross-section of these quantum systems with the constant-mass case. Our results demonstrate that even a small variation in $γ$ significantly impacts the photoionization process's amplitude and peak position. We also found that for specific values of $γ$, an inversion occurs: The amplitude, which initially increases as the quantum dot absorbs the photon, begins to decrease. Additionally, we observed that the optical transitions involving the ground state restrict the admissible values of $γ$ to negative values only. These results may have relevant implications for designing optoelectronic devices based on quantum dots with adjustable mass properties.
format Preprint
id arxiv_https___arxiv_org_abs_2504_00248
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Modifications in the photoionization cross-section of a quantum dot with position-dependent effective mass
Pereira, Carlos Magno O.
Assafrão, Denise
Azevedo, Frankbelson dos S.
de Lima, A. G.
Filgueiras, Cleverson
Silva, Edilberto O.
Mesoscale and Nanoscale Physics
In this work, we investigate the photoionization cross-section of an electron confined in a quantum dot, considering the position-dependent variation of the effective mass through the parameter $γ$. We used a theoretical model based on the Schrödinger equation, in which $γ$ influences the energy levels and wave functions through an effective potential obtained from the harmonic oscillator potential - which, in the limit $γ= 0$, reduces to the original harmonic oscillator potential. Furthermore, we compared the modifications in the photoionization cross-section of these quantum systems with the constant-mass case. Our results demonstrate that even a small variation in $γ$ significantly impacts the photoionization process's amplitude and peak position. We also found that for specific values of $γ$, an inversion occurs: The amplitude, which initially increases as the quantum dot absorbs the photon, begins to decrease. Additionally, we observed that the optical transitions involving the ground state restrict the admissible values of $γ$ to negative values only. These results may have relevant implications for designing optoelectronic devices based on quantum dots with adjustable mass properties.
title Modifications in the photoionization cross-section of a quantum dot with position-dependent effective mass
topic Mesoscale and Nanoscale Physics
url https://arxiv.org/abs/2504.00248