Fe dopant in ZnO: 2+ vs 3+ valency and ion-carrier s,p-d exchange interaction
arXiv:1603.01123 · doi:10.1103/PhysRevB.94.224414
Abstract
Dopants of transition metal ions in II-VI semiconductors exhibit native 2+ valency. Despite this, 3+ or mixed 3+/2+ valency of iron ions in ZnO was reported previously. Several contradictory mechanisms have been put forward for explanation of this fact so far. Here, we analyze Fe valency in ZnO by complementary theoretical and experimental studies. Our calculations within the generalized gradient approximation (GGA+U) indicate that the Fe ion is a relatively shallow donor. Its stable charge state is Fe2+ in ideal ZnO, however, the high energy of the (+/0) transition level enhances the compensation of Fe2+ to Fe3+ by non-intentional acceptors in real samples. Using several experimental methods like electron paramagnetic resonance, magnetometry, conductivity, excitonic magnetic circular dichroism and magneto-photoluminescence we confirm the 3+ valency of the iron ions in polycrystalline (Zn,Fe)O films with the Fe content attaining 0.2%.We find a predicted increase of n-type conductivity upon the Fe doping with the Fe donor ionization energy of 0.25 +/- 0.02 eV consistent with the results of theoretical considerations. Moreover, our magnetooptical measurements confirm the calculated non-vanishing s,p-d exchange interaction between band carriers and localized magnetic moments of the Fe3+ ions in the ZnO, being so far an unsettled issue.
17 pages, 10 figures
References in corpus (9)
- Quasiparticle band structure based on a generalized Kohn-Sham scheme
- Magnetic interactions in transition metal doped ZnO : An abinitio study
- Spinodal nanodecomposition in magnetically doped semiconductors
- Effect of the s,p-d exchange interaction on the excitons in (Zn,Co)O epilayers
- Hole states in wide band-gap diluted magnetic semiconductors and oxides
- Magnetic Ground State of an Individual Fe2+ Ion in Strained Semiconductor Nanostructure
- Observation of strong-coupling effects in a diluted magnetic semiconductor (Ga,Fe)N
- Excitonic giant Zeeman effect in GaN:Mn^3+
- Metastability of Mn in ZnO driven by strong (Mn) intrashell Coulomb repulsion: experiment and theory
Cited by in corpus (4)
- Theory of the coupling of transition metal impurities with free carriers in ZnO
- Transition metal ions in ZnO: effects of intrashell Coulomb repulsion on electronic properties
- Fine structure of an exciton coupled to a single Fe2+ ion in a CdSe/ZnSe quantum dot
- Calculated optical properties of Co in ZnO: internal and ionization transitions