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    Skyrmions and Anomalous Hall Effect in a Dzyloshinskii-Moriya Spiral Magnet

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    Monte Carlo simulation study of a classical spin model with Dzylosinskii-Moriya interaction and the spin anisotropy under the magnetic field is presented. We found a rich phase diagram containing the multiple spin spiral (or skyrme crystal) phases of square, rectangular, and hexagonal symmetries in addition to the spiral spin state. The Hall conductivity Οƒxy\sigma_{xy} is calculated within the sdsd model for each of the phases. While Οƒxy\sigma_{xy} is zero in the absence of external magnetic field, applying a field strength HH larger than a threshold value HcH_c leads to the simultaneous onset of nonzero chirality and Hall conductivity. We find Hc=0H_c = 0 for the multiple spin spiral states, but Hc>0H_c > 0 for a single spin spiral state regardless of the field orientation. Relevance of the present results to MnSi is discussed
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