Ferromagnetic silicene superlattice based thermoelectric flexible renewable energy generator device

MM El-Banna, AH Phillips, ASA Bayoumi - IEEE Access, 2021 - ieeexplore.ieee.org
The object of the current research manuscript is to analyze the valley-spin thermoelectric
properties and Nernst coefficient at two different temperatures for ferromagnetic silicene …

[HTML][HTML] Spin-valley thermoelectric characteristics of ferromagnetic silicene superlattice

MM El-Banna, AH Phillips, ASA Bayoumi - Ain Shams Engineering Journal, 2021 - Elsevier
Based on the transfer matrix method valley-spin caloritronic transport properties of
ferromagnetic silicene superlattice are investigated theoretically under ac-field effect of …

Coherent spin transport properties of ferromagnetic graphene superlattice unit cell

MD Asham, AH Phillips - Physica E: Low-dimensional Systems and …, 2019 - Elsevier
The Aim of this paper is to study the properties of spin transport for ferromagnetic graphene
superlattice unit cell junction taking into account the induced ac-field at different frequencies …

[PDF][PDF] Spin coherent transport in graphene superlattice based nanostructure

AS Abdelrazek, AH Phillips - Spin, 2019 - jmest.org
Spin transport characteristics of single layer ferromagnetic graphene superlattice
nanostructure is explored with application of external magnetic field and induced infrared …

Transport Properties of Ferromagnetic Silicene Superlattice-Based Nanostructure

ASA Bayoumi, AH Phillips - … Mathematics and Physics: Proceedings of the …, 2020 - Springer
A ferromagnetic silicene superlattice field effect transistor (FET) study is presented
considering the properties of spin transport with induced ac-field at various frequencies and …

Pseudo Klein tunneling induced by zero Chern numbers in multiple-topological barriers silicene junction

W Prarokijjak, B Soodchomshom - Physica E: Low-dimensional Systems …, 2019 - Elsevier
We study spin-valley transport property in silicene-based N/TB1/TB2/TB3/N junction where
N and TB i (i= 1, 2, 3) are normal regions and topological barriers, respectively. The phase …