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DOE OSTI ยท 3023098

Quantum critical point followed by Kondo-like behavior due to Cu substitution in the itinerant antiferromagnet La 2 โข(Cu ๐‘ฅ โขNi 1โˆ’๐‘ฅ ) 7

Abstract

La 2 โขNi 7 is an itinerant magnetic system with a small ordered moment of โˆผ 0.1โขยต ๐ต /Ni and a series of antiferromagnetic (AFM) transitions at ๐‘‡ 1 = 61.0K, ๐‘‡ 2 = 56.5K, and ๐‘‡ 3 = 42.2K. ๐‘€ โก(๐ป), and ๐œŒ โก(๐ป) isotherms as well as constant field ๐‘€โก (๐‘‡) and ๐œŒ โก(๐‘‡) measurements on single-crystalline samples manifest a complex, anisotropic ๐ปโˆ’๐‘‡ phase diagram with multiple phase lines. Here, in this study, we present the growth and characterization of single crystals of the La 2 โข(Cu ๐‘ฅ โขNi 1โˆ’๐‘ฅ ) 7 series for 0 โ‰ค ๐‘ฅ โ‰ค 0.181. We measured powder x-ray diffraction and composition, as well as anisotropic temperature- and field-dependent resistivity, temperature- and field-dependent magnetization, and temperature-dependent heat capacity on these single crystals. Using the measured data we infer a transition temperature-composition (๐‘‡โˆ’๐‘ฅ) phase diagram for this system to study the evolution of the AFM ordering upon Cu substitution. For 0 โ‰ค ๐‘ฅ โ‰ค 0.097, the system remains magnetically ordered at base temperature with ๐‘ฅ โ‰ค 0.012, showing signs of multiple AFM ordering temperatures. For the higher substitution levels 0.125 โ‰ค ๐‘ฅ โ‰ค 0.181, there are no signatures of magnetic ordering, but anomalous features in resistance and heat capacity data are observed which are consistent with the Kondo effect in this system. The intermediate ๐‘ฅ = 0.105 sample lies between the magnetic ordered and the Kondo regime and is in the vicinity of the AFM quantum critical point (QCP). Thus, La 2โข (Cu ๐‘ฅ โขNi 1โˆ’๐‘ฅ ) 7 is an example of a small moment system that can be tuned through a QCP. Given these data combined with the fact that the La 2โข Ni 7 structure has kagomelike, Ni sublattices running perpendicular to the crystallographic ๐‘ axis, and a predicted 3โข๐‘‘-electron flat band that contributes to the density of states near the Fermi energy, La 2 โข(Cu ๐‘ฅ โขNi 1โˆ’๐‘ฅ ) 7 becomes a promising system to host and study exotic physics.

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Das, Atreyee [Ames Laboratory, and Iowa State Univ., Ames, IA (United States)] (ORCID:0000000227067796), Mohamed, Siham [Ames Laboratory, and Iowa State Univ., Ames, IA (United States)] (ORCID:0009000056108449), Ribeiro, Raquel A. [Ames Laboratory, and Iowa State Univ., Ames, IA (United States)] (ORCID:0000000160751701), Slade, Tyler J. [Ames Laboratory, and Iowa State Univ., Ames, IA (United States)] (ORCID:0000000167514303), Schmidt, Juan [Ames Laboratory, and Iowa State Univ., Ames, IA (United States)] (ORCID:0000000176948576), Setty, Chandan [Ames Laboratory, and Iowa State Univ., Ames, IA (United States)], Bud'ko, Sergey L. [Ames Laboratory, and Iowa State Univ., Ames, IA (United States)] (ORCID:0000000236035585), Canfield, Paul C. [Ames Laboratory, and Iowa State Univ., Ames, IA (United States)] (ORCID:0000000277150643). 2026-02-09. Quantum critical point followed by Kondo-like behavior due to Cu substitution in the itinerant antiferromagnet La 2 โข(Cu ๐‘ฅ โขNi 1โˆ’๐‘ฅ ) 7. https://doi.org/10.1103/4v32-7zvt

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