Network


Latest external collaboration on country level. Dive into details by clicking on the dots.

Hotspot


Dive into the research topics where H. Fotsin is active.

Publication


Featured researches published by H. Fotsin.


Modern Physics Letters B | 2015

Shannon entropy and decoherence of bound magnetopolaron in a modified cylindrical quantum dot

A. J. Fotue; S. C. Kenfack; M. Tiotsop; N. Issofa; A. V. Wirngo; M. P. Tabue Djemmo; H. Fotsin; Lukong Cornelius Fai

In this paper, we calculate the time evolution of the quantum mechanical state of a bound magnetopolaron in a modified cylindrical quantum dot. In the condition of strong coupling, we investigate the eigen energies and the eigenfunctions of the ground state and the first excited state, respectively. This system may be employed as a two-level quantum system qubit and therefore be helpful for storage of information. The Shannon entropy is used to investigate the decoherence of the qubit when the latter is in the superposition state of the ground and the first excited states. We also study the influence of the electric field, the magnetic field and the Coulomb potential on the decoherence time, eigen energies of the ground state, and the first excited state. It is shown that, the phonon spontaneous emission causes the decoherence of the qubit. We plot the decay of the density matrix of the qubit and the coherent term of the density matrix element p01 (or p10) in a function of time for different coupling strengths, confinement lengths and dispersion coefficient.


Chinese Physics B | 2016

Effects of Shannon entropy and electric field on polaron in RbCl triangular quantum dot

M. Tiotsop; A. J. Fotue; S. C. Kenfack; N. Issofa; H. Fotsin; Lukong Cornelius Fai

In this paper, the time evolution of the quantum mechanical state of a polaron is examined using the Pekar type variational method on the condition of the electric-LO-phonon strong-coupling and polar angle in RbCl triangular quantum dot. We obtain the eigenenergies, and the eigenfunctions of the ground state, and the first excited state respectively. This system in a quantum dot can be treated as a two-level quantum system qubit and the numerical calculations are performed. The effects of Shannon entropy and electric field on the polaron in the RbCl triangular quantum dot are also studied.


Journal of Semiconductors | 2015

Electric and magnetic optical polaron in quantum dot—Part 1: strong coupling

A. J. Fotue; N. Issofa; M. Tiotsop; S. C. Kenfack; M. P. Tabue Djemmo; H. Fotsin; Lukong Cornelius Fai

We investigated the influence of electric field and magnetic field on the ground state energy of polaron in spherical semiconductor quantum dot (QD) using a modified Lee Low Pines (LLP) method. The numerical results show the increase of the ground state energy with the increase of the electric field and the decreasing with the magnetic field. The modulation of the electric field, magnetic field and the confinement lengths lead to the control of the decoherence of the system.


Journal of Semiconductors | 2015

Electro-magnetic weak coupling optical polaron and temperature effect in quantum dot

M. Tiotsop; A. J. Fotue; S. C. Kenfack; N. Issofa; A. V. Wirngo; M. P. Tabue Djemmo; H. Fotsin; Lukong Cornelius Fai

We investigate the influence of the electric field and magnetic fields on the ground state energy of a polaron in a spherical semiconductor quantum dot (QD) using the modified Lee Low Pines (LLP) method. The numerical results show the increase of the ground state energy with the increase of the electric field and the electron–phonon coupling constant, and the decrease with the magnetic field and the longitudinal confinement length. It is also seen that the temperature is an increasing function of the cyclotron frequency and the coupling constant whereas it decreases with the electric field strength. The modulation of the electric field, the magnetic field and the confinement length leads to the control of decoherence in the system.


Journal of Semiconductors | 2015

Energy levels of magneto-optical polaron in spherical quantum dot -- Part 1: Strong coupling

A. J. Fotue; S. C. Kenfack; N. Issofa; M. Tiotsop; H. Fotsin; E. Mainimo; Lukong Cornelius Fai

We investigate the influence of a magnetic field on the ground state energy of a polaron in a spherical semiconductor quantum dot (QD) using the modified LLP method. The ground state energy is split into sub-energy levels and there is a degeneracy of energy levels. It is also observed that the degenerate energy increase with the electron-phonon coupling constant and decrease with the magnetic field. The numerical results show that, under the influence of magnetic field and the interaction with the total momentum along the z-direction, the split energy increases and decreases with the longitudinal and the transverse confinement length, respectively.


American Journal of Modern Physics | 2015

Decoherence of Polaron in Asymmetric Quantum Dot Qubit Under an Electromagnetic Field

A. J. Fotue; S. C. Kenfack; N. Issofa; M. Tiotsop; Michel Pascal Tabue Djemmo; A. V. Wirngo; H. Fotsin; Lukong Cornelius Fai


Indian Journal of Physics | 2016

The effect of electromagnetic field and Coulomb impurity on polaron in RbCl triangular quantum dot qubit

M. Tiotsop; A. J. Fotue; S. C. Kenfack; H. Fotsin; Lukong Cornelius Fai


Superlattices and Microstructures | 2016

Bound magneto-polaron in triangular quantum dot qubit under an electric field

A. J. Fotue; N. Issofa; M. Tiotsop; S. C. Kenfack; M. P. Tabue Djemmo; A. V. Wirngo; H. Fotsin; Lukong Cornelius Fai


Superlattices and Microstructures | 2017

Decoherence time, hydrogenic-like impurity effect and Shannon entropy on polaron in RbCl triangular quantum dot qubit

M. Tiotsop; A. J. Fotue; G.K. Fautso; C.S. Kenfack; H. Fotsin; Lukong Cornelius Fai


European Physical Journal Plus | 2016

Temperature, impurity and electromagnetic field effects on the transition of a two-level system in a triangular potential

A. J. Fotue; S. C. Kenfack; M. Tiotsop; N. Issofa; M. P. Tabue Djemmo; A. V. Wirngo; H. Fotsin; Lukong Cornelius Fai

Collaboration


Dive into the H. Fotsin's collaboration.

Top Co-Authors

Avatar
Top Co-Authors

Avatar
Top Co-Authors

Avatar
Top Co-Authors

Avatar
Top Co-Authors

Avatar

N. Issofa

University of Dschang

View shared research outputs
Top Co-Authors

Avatar
Top Co-Authors

Avatar
Top Co-Authors

Avatar
Top Co-Authors

Avatar

G.K. Fautso

Teacher training college

View shared research outputs
Top Co-Authors

Avatar
Researchain Logo
Decentralizing Knowledge