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Field-induced antiferromagnetic transition in CeIrIn5

Y. Tokunaga1,*, M.-T. Suzuki2,3, S. Krämer4, H. Sakai1, S. Kambe1, H. Harima5, D. Aoki6, M. Horvatić4, and I. Sheikin4,†

  • *Contact author: tokunaga.yo@jaea.go.jp
  • †Contact author: ilya.sheikin@lncmi.cnrs.fr

Phys. Rev. B 113, L140406 – Published 28 April, 2026

DOI: https://doi.org/10.1103/8khb-593t

Abstract

We report a low-temperature In115 nuclear magnetic resonance (NMR) study of the prototypical heavy-fermion compound CeIrIn5 in high magnetic fields applied close to the crystallographic c axis. For this orientation, a field-induced transition was previously reported to take place at about 28 T. Although we do not observe any change of the NMR spectrum above the transition, the intensity of the NMR lines drastically decreases as a consequence of a considerable shortening of the T2 relaxation time. In addition, 1/T1 shows a pronounced maximum at the transition. Taking into account previous high-field de Haas–van Alphen results in conjunction with band-structure calculations, our NMR results are most naturally explained by the field-induced transition into an antiferromagnetic state with the propagation vector Q=(1/2,1/2,0) and magnetic moments aligned antiferromagnetically along the c axis. This makes CeIrIn5 a unique case where the application of the magnetic field induces an ordered state with moments antiferromagnetically aligned along the field direction.

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