info:eu-repo/semantics/article
Partial preservation of chiral symmetry and colossal magnetoresistance in adatom doped graphene
Fecha
2014-02Registro en:
Usaj, Gonzalo; Cornaglia de la Cruz, Pablo Sebastian; Balseiro, Carlos Antonio; Partial preservation of chiral symmetry and colossal magnetoresistance in adatom doped graphene; American Physical Society; Physical Review B - Solid State; 89; 8; 2-2014; 85405-85409
2469-9950
2469-9969
Autor
Usaj, Gonzalo
Cornaglia de la Cruz, Pablo Sebastian
Balseiro, Carlos Antonio
Resumen
We analyze the electronic properties of adatom-doped graphene in the low-impurity-concentration regime. We focus on the Anderson localized regime and calculate the localization length ξ as a function of the electron doping and an external magnetic field. The impurity states hybridize with carbon's p z states and form a partially filled band close to the Dirac point. Near the impurity band center, the chiral symmetry of the system's effective Hamiltonian is partially preserved, which leads to a large enhancement of ξ . The sensitivity of transport properties, namely, Mott's variable range hopping scale T 0 , to an external magnetic field perpendicular to the graphene sheet leads to a colossal magnetoresistance effect, as observed in recent experiments.