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    Magnetization plateaux of S = 1/2 two-dimensional frustrated antiferromagnet Cs2_2CuBr4_4

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    The field induced magnetic phase transitions of Cs2_2CuBr4_4 were investigated by means of magnetization process and neutron scattering experiments. This system undergoes magnetic phase transition at Ne\'{e}l temperature TN=1.4T_\mathrm{N}=1.4 K at zero field, and exhibits the magnetization plateau at approximately one third of the saturation magnetization for the field directions H∥bH\parallel b and H∥cH\parallel c. In the present study, additional symptom of the two-third magnetization plateau was found in the field derivative of the magnetization process. The magnetic structure was found to be incommensurate with the ordering vector Q=(0,0.575,0)\boldsymbol{Q}=(0, 0.575, 0) at zero field. With increasing magnetic field parallel to the c-axis, the ordering vector increases continuously and is locked at Q=(0,0.662,0)\boldsymbol{Q}=(0, 0.662, 0) in the plateau field range 13.1T<H<14.4T13.1 \mathrm{T} < H < 14.4 \mathrm{T}. This indicates that the collinear \textit{up-up-down} spin structure is stabilized by quantum fluctuation at the magnetization plateau.Comment: 6 pages, 4 Postscript figures, uses iopams.sty and IOPART.CL
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