DOE OSTI ยท 3023098
Quantum critical point followed by Kondo-like behavior due to Cu substitution in the itinerant antiferromagnet La 2 โข(Cu ๐ฅ โขNi 1โ๐ฅ ) 7
Abstract
La 2 โขNi 7 is an itinerant magnetic system with a small ordered moment of โผ 0.1โขยต ๐ต /Ni and a series of antiferromagnetic (AFM) transitions at ๐ 1 = 61.0K, ๐ 2 = 56.5K, and ๐ 3 = 42.2K. ๐ โก(๐ป), and ๐ โก(๐ป) isotherms as well as constant field ๐โก (๐) and ๐ โก(๐) measurements on single-crystalline samples manifest a complex, anisotropic ๐ปโ๐ phase diagram with multiple phase lines. Here, in this study, we present the growth and characterization of single crystals of the La 2 โข(Cu ๐ฅ โขNi 1โ๐ฅ ) 7 series for 0 โค ๐ฅ โค 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 (๐โ๐ฅ) phase diagram for this system to study the evolution of the AFM ordering upon Cu substitution. For 0 โค ๐ฅ โค 0.097, the system remains magnetically ordered at base temperature with ๐ฅ โค 0.012, showing signs of multiple AFM ordering temperatures. For the higher substitution levels 0.125 โค ๐ฅ โค 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 ๐ฅ = 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 2โข (Cu ๐ฅ โขNi 1โ๐ฅ ) 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 2โข Ni 7 structure has kagomelike, Ni sublattices running perpendicular to the crystallographic ๐ axis, and a predicted 3โข๐-electron flat band that contributes to the density of states near the Fermi energy, La 2 โข(Cu ๐ฅ โขNi 1โ๐ฅ ) 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 โข(Cu ๐ฅ โขNi 1โ๐ฅ ) 7. https://doi.org/10.1103/4v32-7zvt
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