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Magnetic order and low-energy excitations in the quasi-one-dimensional antiferromagnet CuSe₂O₅ with staggered fields

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arxiv 1302.0719 v2 pith:JVKOQ5FN submitted 2013-02-04 cond-mat.str-el

Magnetic order and low-energy excitations in the quasi-one-dimensional antiferromagnet CuSe₂O₅ with staggered fields

classification cond-mat.str-el
keywords magneticantiferromagneticresonanceantiferromagnetcuseexcitationsgroundlow-energy
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Ground state and low-energy excitations of the quasi-one-dimensional antiferromagnet CuSe$_2$O$_5$ were experimentally studied using bulk magnetization, neutron diffraction, muon spin relaxation and antiferromagnetic resonance measurements. Finite interchain interactions promote long-range antiferromagnetic order below $T_N=17$ K. The derived spin canted structure is characterized by the magnetic propagation vector $\mathbf{k}=(1, 0, 0)$ and the reduced magnetic moment $\bm{m}=[0.13(7), 0.50(1), 0.00(8)]\mu_B$. The values of the magnetic anisotropies determined from the field and angular dependencies of the antiferromagnetic resonance comply well with a previous electron paramagnetic resonance study and correctly account for the observed magnetic ground state and spin-flop transition.

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