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From the 1 of 6 linked papers with an AI index.

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6 papers

cond-mat.str-el2026

Giant magnetocaloric effect at low fields in triangular-lattice NdMgAlO

Yantao Cao, He Sun, Zhendong Fu +6

The paper studies NdMgAl₁₁O₁₉, a triangular‑lattice rare‑earth magnet that exhibits a quantum‑spin‑liquid‑like ground state and demonstrates a large magnetocaloric effect at low ma…

cond-mat.str-el2026

Ising Supercriticality and Universal Magnetocalorics in Spiral Antiferromagnet NdBWO

Xinyang Liu, Enze Lv, Xueling Cui +8

The celebrated analogy between the pressure-temperature phase diagram of a liquid-gas system and the field-temperature phase diagram of a ferromagnet has long been a cornerstone fo…

cond-mat.str-el2026

Discovery of hidden order in the Shastry-Sutherland magnet Nd2Be2GeO7

Andi Liu, Samuel H. Moody, Thomas J. Hicken +9

Hidden order typically manifests as a thermodynamic phase transition without a conventional order parameter, leaving its true nature concealed even at the lowest temperatures. In t…

cond-mat.str-el2025

Realization of large magnetocaloric effect in the Kagome antiferromagnet Gd3BWO9 for Sub-Kelvin cryogenic refrigeration

Fangyuan Song, Xinyang Liu, Chao Dong +10

Rare-earth (RE) based frustrated magnets have attracted great attention as excellent candidates for magnetic refrigeration at sub-Kelvin temperatures, while the experimental identi…

cond-mat.str-el2025

Magnetic ground state and persistent spin fluctuations in triangular-lattice antiferromagnet NdZnAlO

Yantao Cao, Huanpeng Bu, Toni Shiroka +5

Rare-earth triangular-lattice magnets serve as an excellent platform for investigating exotic quantum magnetic phenomena. Recently, the hexaaluminate \cmao\ has been proposed to ho…

cond-mat.str-el2025

U(1) Dirac quantum spin liquid candidate in triangular-lattice antiferromagnet CeMgAlO

Yantao Cao, Akihiro Koda, M. D. Le +7

Quantum spin liquid represents an intriguing state where electron spins are highly entangled yet spin fluctuation persists even at 0 K. Recently, the hexaaluminates \textit{R}MgAl$…