122 citations · 145 across the 6 of their papers we have counts for
8 papers
Optical activation of nonlinear Hall effect in topological insulators with warped Fermi surface
Mohammad Shafiei, Farhad Fazileh, Milorad V. Milošević
Topological insulators (TIs) with hexagonally warped Fermi surface are natural platforms for the nonlinear Hall effect, as warping breaks inversion symmetry while preserving time-r…
Linearly polarized light enables chiral edge transport in quasi-2D Dirac materials
Mohammad Shafiei, Farhad Fazileh, Milorad V. Milošević
Floquet engineering with high-frequency light offers dynamic control over topological phases in quantum materials. While in 3D Dirac systems circularly polarized light is known to…
Ground state of the staggered Heisenberg- honeycomb model in a magnetic field
Mojtaba Ahmadi-Yazdi, Mohammad-Hossein Zare, Hamid Mosadeq +1
We study the ground state properties of the staggered Heisenberg- honeycomb model under a magnetic field based on analytical and numerical methods. Our calculati…
Enhanced thermoelectric properties in phosphorene nanorings
Fatemeh Moghadasi Borojeni, Esmaeil Taghizadeh Sisakht, Farhad Fazileh +1
Using the tight-binding approach, we investigate the thermoelectric (TE) properties of rectangular phosphorene nanorings for both symmetrically and asymmetrically attaching to phos…
The overlooked role of band-gap parameter in characterization of Landau levels in a gapped phase semi-Dirac system: the monolayer phosphorene case
Esmaeil Taghizadeh Sisakht, Farhad Fazileh, S. Javad Hashemifar +1
Two-dimensional gapped semi-Dirac (GSD) materials are systems with a finite band gap that their charge carriers behave relativistically in one direction and Schrödinger-like in the…
Topological phase transition in GeSnH induced by biaxial tensile strain: A tight-binding study
Zahra Aslani, Esmaeil Taghizadeh Sisakht, Farhad Fazileh +2
An effective tight-binding (TB) Hamiltonian for monolayer GeSnH is proposed which has an inversion-asymmetric honeycomb structure. The low-energy band structure of our TB model…