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Induced quantum magnetism on a triangular lattice of non-Kramers ions in PrMgAl11O19

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arxiv 2410.07885 v2 pith:FI5FMPVA submitted 2024-10-10 cond-mat.str-el

classification cond-mat.str-el
keywords magneticquantumprmgal11o19inducedmagnetismdataexternalfield
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We report the magnetic properties of the quantum triangular lattice antiferromagnet (TLAF) PrMgAl11O19 through magnetization and specific heat measurements. Strong magnetic anisotropy indicates the realization of an Ising-like magnetism in PrMgAl11O19 single crystal while no long-range magnetic ordering is realized down to 0.4 K. The splitting of the low-lying quasi-doublet into two singlets suggested by experimental data, is consistent with an effective pseudospin-1/2 scenario. The observed gapless excitations in zero field are attributed to induced quantum magnetism, they would be induced by magnetic interactions of an energy scale comparable with the splitting between the two singlets. Based on these results, we modeled the magnetic ground state of PrMgAl11O19 by a quantum Ising magnet with an intrinsic transverse field rather than a quantum spin liquid (QSL). In addition, our data show a non-monotonous response of the low-temperature specific heat to the external fields revealing a complex interplay between intrinsic and external magnetic fields.

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  1. Magnetocalorics of singlet ground state induced moment magnets

    cond-mat.str-el 2025-07 conditional novelty 6.0 of 10

    For singlet-singlet induced-moment magnets, the paper derives field-dependent specific heat, magnetocaloric and barocaloric rates, and shows the antiferromagnetic soft mode is arrested except at zero and critical field.

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