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October 18, 2025Chinese Physics Letters9 citationsOpen Access

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

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FSFangyuan SongXLXinyang LiuCDChao Dong

Key Points

  • The study reveals a large magnetocaloric effect achieved in Gd3BWO9 at sub-Kelvin temperatures, enhancing cooling capabilities.
  • With a volumetric entropy density of 502.2 mJ/K/cm³ and a minimum temperature of ~168 mK, Gd3BWO9 outperforms traditional refrigerants.
  • Thermodynamic characterizations indicate intricate magnetic phase diagrams, showcasing multiple magnetic phases under varying conditions.
  • The findings highlight the potential of frustrated magnets in advancing magnetic refrigeration technologies at extremely low temperatures.

Abstract

Abstract Rare-earth (RE) based frustrated magnets have attracted great attention as excellent candidates for magnetic refrigeration at sub-Kelvin temperatures, while the experimental identification on systems exhibiting both large volumetric cooling capacity and reduced working temperatures far below 1 K remain to be a challenge. Here, through the ultra-low temperature magnetism and thermodynamic characterizations, we unveil the large magnetocaloric effect (MCE) realized at sub-Kelvin temperatures in the frustrated Kagome antiferromagnet Gd 3 BWO 9 with T N ~1.0 K. The isothermal magnetization curves indicate the existence of field (B) induced anisotropic magnetic phase diagrams, where four distinct magnetic phases for B // c -axis and five magnetic phases for B // ab-plane are identified at T T N . The analysis of magnetic entropy S ( B , T ) data and direct adiabatic demagnetization tests reveal a remarkable cooling performance at sub-Kelvin temperatures featured by a large volumetric entropy density 502.2 mJ/K/cm 3 and a low attainable minimal temperature T min ~168 mK from the initial cooling condition of 2 K and 6 T, surpassing most of Gd-based refrigerants previously documented in temperature ranges of 0.25-4 K. The realized T min ~168 mK far below T N ~ 1.0 K in Gd 3 BWO 9 is related to the combined effects of magnetic frustration and criticality-enhanced MCE, which together leave a substantial magnetic entropy at reduced temperatures by enhancing spin fluctuations.

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Cite This Study

Song et al. (2025) studied this question.

synapsesocial.com/papers/68f3eb011cfc5ad53f2907d0https://doi.org/10.1088/0256-307x/42/12/120706
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