Sulemana S. Abukari
University of Cape Coast
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Publication
Featured researches published by Sulemana S. Abukari.
Physica E-low-dimensional Systems & Nanostructures | 2016
Matthew Amekpewu; S. Y. Mensah; Rabiu Musah; N. G. Mensah; Sulemana S. Abukari; K. A. Dompreh
Abstract The theory of hot electrons injection in carbon nanotubes (CNTs) where both dc electric field (Ez), and a quasi-static ac field exist simultaneously (i.e. when the frequency ω of ac field is much less than the scattering frequency v ( ω ⪡ v or ω τ ⪡ 1 , v = τ − 1 ) where τ is relaxation time) is studied. The investigation is done theoretically by solving semi-classical Boltzmann transport equation with and without the presence of the hot electrons source to derive the current densities. Plots of the normalized current density versus dc field (Ez) applied along the axis of the CNTs in the presence and absence of hot electrons reveal ohmic conductivity initially and finally negative differential conductivity (NDC) provided ω τ ⪡ 1 (i.e. quasi- static case). With strong enough axial injection of the hot electrons, there is a switch from NDC to positive differential conductivity (PDC) about E z ≥ 75 kV / cm and E z ≥ 140 kV / cm for a zigzag CNT and an armchair CNT respectively. Thus, the most important tough problem for NDC region which is the space charge instabilities can be suppressed due to the switch from the NDC behaviour to the PDC behaviour predicting a potential generation of terahertz radiations whose applications are relevance in current-day technology, industry, and research.
Physica B-condensed Matter | 2016
Matthew Amekpewu; S. Y. Mensah; Rabiu Musah; N. G. Mensah; Sulemana S. Abukari; K. A. Dompreh
Abstract High frequency conductivity of hot electrons in undoped single walled achiral Carbon Nanotubes (CNTs) under the influence of ac–dc driven fields was considered. We investigated semi-classically Boltzmanns transport equation with and without the presence of the hot electrons’ source by deriving the current densities in CNTs. Plots of the normalized current density versus frequency of ac-field revealed an increase in both the minimum and maximum peaks of normalized current density at lower frequencies as a result of a strong injection of hot electrons. The applied ac-field plays a twofold role of suppressing the space-charge instability in CNTs and simultaneously pumping an energy for lower frequency generation and amplification of THz radiations. These have enormous promising applications in very different areas of science and technology.
arXiv: Materials Science | 2013
Musah Rabiu; S. Y. Mensah; Sulemana S. Abukari
Using quasi-time dependent semi-classical transport theory in RTA, we obtained coupled current equations in the presence of time varying field and based on general scattering mechanism
World Journal of Condensed Matter Physics | 2013
Sulemana S. Abukari; S. Y. Mensah; Musah Rabiu; Kofi W. Adu; N. G. Mensah; K. A. Dompreh; Anthony Twum; Matthew Amekpewu
\tau \propto \mathcal{E}^{\beta}
Physica E-low-dimensional Systems & Nanostructures | 2014
Rabiu Musah; S. Y. Mensah; Sulemana S. Abukari
. We find that close to the Dirac point, the characteristic exponent
European Physical Journal B | 2013
Sulemana S. Abukari; Kofi W. Adu; S. Y. Mensah; N. G. Mensah; K. A. Dompreh; Anthony Twum; Musah Rabiu
\beta = +2
Physics Letters A | 2016
Musah Rabiu; S. Y. Mensah; Ibrahim Yakubu Seini; Sulemana S. Abukari
corresponds to acoustic phonon scattering.
arXiv: Materials Science | 2013
Musah Rabiu; S. Y. Mensah; Sulemana S. Abukari
\beta = +1
arXiv: Mesoscale and Nanoscale Physics | 2015
K. A. Dompreh; N. G. Mensah; S. Y. Mensah; Sulemana S. Abukari; F. Sam; R. Edziah
long-range Coulomb scattering mechanism.
Physica E-low-dimensional Systems & Nanostructures | 2016
K. A. Dompreh; S. Y. Mensah; Sulemana S. Abukari; F. Sam; N. G. Mensah
\beta = -1