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Direct determination of the magnetic ground state in the square lattice S=1/2 antiferromagnet Li2VOSiO4 -: art. no. 027202

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PHYSICAL REVIEW LETTERS
卷 93, 期 2, 页码 -

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AMERICAN PHYSICAL SOC
DOI: 10.1103/PhysRevLett.93.027202

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Powder neutron diffraction and resonant x-ray scattering measurements from a single crystal have been performed to study the low-temperature state of the 2D frustrated, quantum-Heisenberg system Li2VOSiO4. Both techniques indicate a collinear antiferromagnetic ground state, with propagation vector k=(1/2 1/2 0), and magnetic moments in the a-b plane. Contrary to previous reports, the ordered moment at 1.44 K, m=0.63(3)mu(B), is very close to the value expected for the square lattice Heisenberg model (similar or equal to0.6mu(B)). The magnetic order is three dimensional, with antiferromagnetic a-b layers stacked ferromagnetically along the c axis. Neither x-ray nor neutron diffraction shows evidence for a structural distortion between 1.6 and 10 K.

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