Abstract Non-equilibrium spin-polarized transport properties of antiferromagnetic stanene nanoribbons are theoretically studied under the combining effect of a normal electric field and linearly polarized irradiation based on the tight-binding model at room temperature. Due to the existence of spin-orbit coupling in stanene lattice, applying normal electric field leads to splitting of band degeneracy of spin-resolved energy levels in conduction and valence bands. Furthermore, unequivalent absorption of the polarized photons at two valleys which is attributed to an antiferromagnetic exchange field results in unequal spin-polarized photocurrent for spin-up and spin-down components. Interestingly, in the presence of band bending which has been...
The spin-dependent quantum transport of electrons in non magnetic III-V semiconductor nanos-tructure...
Ab initio methods are used to study the spin-resolved transport properties of graphene nanoribbons (...
The presence of certain kinds of defects at the edges of monohydrogenated zigzag graphene nanoribbon...
We propose a device concept, based on monolayer stanene, able to provide highly polarized spin curre...
The electronic properties of antimonene, single-layer Sb, are attracting great attention. In this pa...
International audienceWe have used a polarized spatially resolved microluminescence technique to inv...
We investigate the nonequilibrium transport properties of a silicene armchair nanoribbon with a rand...
We investigate spin splitting in zigzag graphene nanoribbons (ZGNRs) under non-uniform uniaxial stra...
Quasiparticle band structures and optical properties of two dimensional stanene and stanane (fully h...
The spin filter capability of a (0,8) armchair graphene nanoribbon with Fe atoms at substitutional s...
This study investigates the structural and electronic properties of two-dimensional tin, known as s...
Zig-zag graphene nanoribbons (ZGNRs) are known to possess spin moments at the hydrogen- terminated e...
We study graphene nanoribbons theoretically in the presence of spatially varying magnetic fields pro...
Abstract The researches for new quantum spin Hall (QSH) insulators with large bulk energy gap are of...
Bandgap opening due to strain engineering is a key architect for making graphene’s optoelectronic, s...
The spin-dependent quantum transport of electrons in non magnetic III-V semiconductor nanos-tructure...
Ab initio methods are used to study the spin-resolved transport properties of graphene nanoribbons (...
The presence of certain kinds of defects at the edges of monohydrogenated zigzag graphene nanoribbon...
We propose a device concept, based on monolayer stanene, able to provide highly polarized spin curre...
The electronic properties of antimonene, single-layer Sb, are attracting great attention. In this pa...
International audienceWe have used a polarized spatially resolved microluminescence technique to inv...
We investigate the nonequilibrium transport properties of a silicene armchair nanoribbon with a rand...
We investigate spin splitting in zigzag graphene nanoribbons (ZGNRs) under non-uniform uniaxial stra...
Quasiparticle band structures and optical properties of two dimensional stanene and stanane (fully h...
The spin filter capability of a (0,8) armchair graphene nanoribbon with Fe atoms at substitutional s...
This study investigates the structural and electronic properties of two-dimensional tin, known as s...
Zig-zag graphene nanoribbons (ZGNRs) are known to possess spin moments at the hydrogen- terminated e...
We study graphene nanoribbons theoretically in the presence of spatially varying magnetic fields pro...
Abstract The researches for new quantum spin Hall (QSH) insulators with large bulk energy gap are of...
Bandgap opening due to strain engineering is a key architect for making graphene’s optoelectronic, s...
The spin-dependent quantum transport of electrons in non magnetic III-V semiconductor nanos-tructure...
Ab initio methods are used to study the spin-resolved transport properties of graphene nanoribbons (...
The presence of certain kinds of defects at the edges of monohydrogenated zigzag graphene nanoribbon...