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Publications



  1. 1.“Tailoring topological states in silicene using different halogen-passivated Si (111) substrates”,

     V. Derakhshan, A. G. Moghaddam, D. Ceresoli, Phys. Rev. B 97, 125301 (2018).


2. Effective theory of exotic superconductivity in LaAlO3/SrTiO3interfaces,

     H. Esmailzadeh, A. G. Moghaddam, Physica C 548, 123 (2018).


3. Unconventional superconductivity from magnetism in transition-metal dichalcogenides,

     M. A. Rahimi, A. G. Moghaddam, C. Dykstra, M. Governale, U. Zülicke, Phys. Rev. B 95, 104515 (2017).


4. “Superconductivity in the ferromagnetic semiconductor SmN

      E. M. Anton, S. Granville, A. Engel, S. V. Chong, M. Governale, U. Zülicke, A. G. Moghaddam, et al., Phys. Rev. B 94, 024106 (2016).


  1. 5.Tunable band gap, magnetoresistance and pseudo-magnetoresistance in silicene-based nanodevices”,

     V. Derakhshan, S. A. Ketabi, A. G. Moghaddam, Superlattices Microstruct. 100, 214 (2016).


  1. 6.Time-reversal breaking and spin transport induced by magnetic impurities in a 2D topological insulator”,

     V. Derakhshan, S. A. Ketabi, A. G. Moghaddam, J. Phys. D: Appl. Phys. 49, 355001 (2016).


7. “Superconductivity electron and hole lenses”,

     H. Cheraghchi, H. Esmailzadeh, AG Moghaddam, Phys. Rev. B 93, 214508 (2016).


  1. 8.Coordinate transformations and matter waves cloaking”,

      R. G. Mohammadi, A. G. Moghaddam, R. Mohammadkhani, Phys. Lett. A 380, 1093 (2016).


  1. 9.Spin relaxation and the Kondo effect in transition metal dichalcogenide monolayers”,

     H. Rostami, A. G. Moghaddam, R. Asgari, J. phys.: Cond. Matt. 28, 505002 (2016).


10. “Supercurrent reversal in Josephson junctions based on bilayer graphene flakes”,

       B. Z. Rameshti, M. Zareyan, A. G. Moghaddam, Phys. Rev. B 92, 085403 (2015).


  1. 11.Optical responses and optical activity of an ultrathin topological insulator film”,       

        F. Parhizgar, A. G. Moghaddam, R. Asgari, Phys. Rev. B 92, 045429 (2015).


12. “Spin-dependent Seebeck effect and spin-caloritronics in magnetic graphene”,

       B. Z. Rameshti, A. G. Moghaddam, Phys. Rev. B 91, 155407 (2015).


  1. 13.Electrically controllable spin pumping in graphene via rotating magnetization”,

       M. A. Rahimi, A. G. Moghaddam, J. Phys. D: Appl. Phys. 48, 295004 (2015).


  1. 14.Gate-controlled supercurrent reversal in MoS2-based Josephson junctions”,

        B. Z. Rameshti, A. G. Moghaddam, M. Zareyan, Europhys. Lett. (EPL) 108, 37002 (2014).


  1. 15.Superconductivity across the gap: Proximity effect for semiconductor valence-band states due to contact with a simple-metal superconductor”,

       A. G. Moghaddam, T. Kernreiter, M. Governale, U. Zülicke, Phys. Rev. B 89, 184507 (2014).


16. “Boltzmann conductivity of ferromagnetic graphene at the presence of magnetic impurities”,

       B. Z. Rameshti, A. G. Moghaddam, S. H. Abedinpour, S. Abdizadeh, M. Zareyan, Phys. Rev. B 88, 245424 (2013).


  1. 17.Effective lattice Hamiltonian for monolayer MoS2: Tailoring electronic structure with perpendicular electric and magnetic fields”,

       H Rostami, AG Moghaddam, R Asgari, Phys. Rev. B 88, 085440 (2013).


  1. 18.Josephson-Majorana cycle in topological single-electron hybrid transistors”,

       N. Didier, M. Gibertini, A. G. Moghaddam, J. König, R. Fazio, Phys. Rev. B 88, 024512 (2013).


  1. 19.Driven superconducting proximity effect in interacting quantum dots”,

       A. G. Moghaddam, M. Governale, J. König, Phys. Rev. B 85, 094518 (2012).


20. “Graphene-based electronic spin lenses”,

       A. G. Moghaddam, M. Zareyan, Phys. Rev. Lett. 105, 146803 (2010).


21. “Ferromagnet/superconductor heterostructures in graphene”,

       A. G. Moghaddam, M. Zareyan, Solid State Commun. 149, 1106 (2009).


22. “Anisotropic minimal conductivity of graphene bilayers”,

        A. G. Moghaddam, M. Zareyan, Phys. Rev. B  79, 073401 (2009).


23. “Andreev-Klein reflection in graphene ferromagnet-superconductor junctions”,

       M. Zareyan, H .Mohammadpour, A. G. Moghaddam, Phys. Rev. B 78, 193406 (2008).


  1. 24.Long range Josephson coupling through ferromagnetic graphene”,  

       A. G. Moghaddam, M. Zareyan, Phys. Rev. B 78, 115413 (2008).


25. “Graphene-based superconducting quantum point contacts”,

       A. G. Moghaddam, M. Zareyan, Appl. Phys. A 89, 579 (2007).


  1. 26.Josephson effect in mesoscopic graphene strips with finite width”,

       A. G. Moghaddam, M. Zareyan, Phys. Rev. B 74, 241403(R) (2006).