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E. Taghizadehsisakht, Mohammad H. Zare, and F. Fazileh

Scaling laws of band gaps of phosphorene nanoribbons: A tight-binding calculation.

Physical Review B. 91: 085409 (2015).

 

E. Taghizadehsisakht, F. Fazileh, and M. Forouzandeh

Numerical study of the effect of disorder and magnetic field on the quantum transport of two-dimensional nanostructures modeled by tight-binding approximation.

Iranian Journal of Physics Research 13(1): 9 (2013).

 

Mohammad H. Zare, F. Fazileh, and F. Shahbazi

Zero-temperature phase diagram of the classical Kane-Mele-Heisenberg model.

Physical Review B. 87: 224416 (2013).

 

B. Bagheri and F. Fazileh

Study of magnetic properties of graphene nanostructures and graphene nanoribbons. Iranian Journal of Physics Research 11(4): 347 (2012).

 

F. Fazileh, M. Ghorbani, Z. Maghoul, B. Mirza, and M. A. Salehi

Investigating the effect of disorder on density of states of graphene nano-ribbons.

Iranian Journal of Physics Research 11(2): 167 (2011).

 

F. Fazileh, X. Chen, R. J. Gooding, W. A. Atkinson, and D. C. Johnston
Role of magnetic moments in the metal-to-insulator transition.
Journal of Physics: Conference Series. 150: 022016 (2009).

 

Farhad Fazileh and Eugene H. Kim

The influence of Kondo physics on the properties of a spin glass.

Journal of Physics: Condensed Matter 20: 095202 (2008).

 

Farhad Fazileh and Eugene H. Kim

Interplay of spin glass physics and the Kondo effect in a model for dilute magnetic alloys. Physical Review B. 76: 144429 (2007).

 

F. Fazileh, R. J. Gooding, W. A. Atkinson, and D. C. Johnston

Role of Strong Electronic Correlations in the Metal-To-Insulator Transition in Disordered LiAlyTi2-yO4.

Physical Review Letters. 96: 046410 (2006).

 

F. Fazileh, X. Chen, R. J. Gooding, and K. Tabunshchyk

Electronic properties of disordered corner-sharing tetrahedral lattices.

Physical Review B. 73: 035124 (2006).

 

F. Fazileh, R. J. Gooding, and D. C. Johnston

Examining the metal-to-insulator transitions in Li1 + xTi2–xO4 and LiAlyTi2–yO4 with a quantum site percolation model.

Physical Review B. 69: 104503 (2004).

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