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Singlet–Triplet Excitations and High-Field Magnetization in CuTe2O5

Wang, Z.; Schmidt, M.; Goncharov, Y.; Skourski, Y.; Wosnitza, J.; Berger, H.; Krug Von Nidda, H.-A.; Loidl, A.; Deisenhofer, J.

Abstract

By measuring the THz electron spin resonance (ESR) transmission spectra and high-field magnetization on the spingapped system CuTe2O5, we identified the singlet–triplet excitations in the dimerized non-magnetic ground state. The determined spin-gap value of hnu0 = 4.94 meV at the Gamma point (Q = 0) is significantly smaller than the strongest antiferromagnetic exchange interaction between the Cu ions predicted by theoretical investigations. We also observed the critical field Ha* c1 = 37.6 T for H perp bc-plane and Hbc c1 = 40.6 T for H parallel bc-plane at the onset of non-zero magnetization, consistent with the gap value and corresponding anisotropic g-factors determined previously. The observed singlet–triplet excitations in Faraday and Voigt configurations suggest a mixing of the singlet state with the Sz = 0 triplet state and the Sz = plus/minus 1 triplet states, respectively, due to the Dzyaloshinskii–Moriya (DM) interaction with a DM vector perpendicular to the crystalline bc-plane.

Involved research facilities

  • High Magnetic Field Laboratory (HLD)

Permalink: https://www.hzdr.de/publications/Publ-16469


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