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Gradhand, M., Fedorov, D.V., Pientka, F., Zahn, P., Mertig, I. and Györffy, B.L. (2012) First-Principle Calculations of the Berry Curvature of Bloch States for Charge and Spin Transport of Electrons. Journal of Physics: Condensed Matter, 24, Article ID: 213202.
http://dx.doi.org/10.1088/0953-8984/24/21/213202
has been cited by the following article:
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TITLE:
Berry Approach to Intrinsic Anomalous Hall Conductivity in Dilute Magnetic Semiconductors (Ga1-xMnxAs)
AUTHORS:
Sintayehu Mekonnen, P. Singh
KEYWORDS:
Berry Potential, Berry Curvature, Kubo Formalism, Anomalous Hall Conductivity
JOURNAL NAME:
World Journal of Condensed Matter Physics,
Vol.5 No.3,
August
5,
2015
ABSTRACT: We develop a model Hamiltonian to treat intrinsic anomalous Hall conductivity in dilute magnetic semiconductor (DMS) of type (III, Mn, V) and obtain the Berry potential and Berry curvature which are responsible for intrinsic anomalous Hall conductivity in Ga1-x MnxAs DMS. Based on Kubo formalism, we establish the relation between Berry curvature and intrinsic anomalous Hall conductivity. We find that for strong spin-orbit interaction intrinsic anomalous Hall conductivity is quantized which is in agreement with recent experimental observation. In addition, we show that the intrinsic anomalous Hall conductivity (AHC) can be controlled by changing concentration of magnetic impurities as well as exchange field. Since Berry curvature related contribution of anomalous Hall conductivity is believed to be dissipationless, our result is a significant step toward achieving dissipationless electron transport in technologically relevant conditions in emerging of spintronics.