反铁磁性
挫折感
凝聚态物理
材料科学
纳米颗粒
自旋(空气动力学)
旋转玻璃
消散
磁矩
磁性纳米粒子
几何挫折
相变
纳米技术
热力学
物理
作者
Elizabeth M. Jefremovas,Peter Svedlindh,L. Fernández Barquı́n
标识
DOI:10.1007/s11051-022-05574-5
摘要
Abstract The spin dynamics in magnetically disordered GdCu 2 nanoparticles, varying the nanoparticle size in the range 53 to 7 nm, has been scrutinized. Dynamic χ A C susceptibility measurements have revealed the existence of dissipation at T g = 18 K, which is associated to the spin freezing transition, for all the ensembles. Besides, the superantiferromagnetic ensembles (〈 D 〉≥ 24 nm) also showcase a dissipation contribution close to the vicinity of the Néel transition, T N = 40.2 K. This dissipation, which takes the form of two humps located at T d 1 = 33.5(5) K and T d 2 = 40.0(5) K, is associated to uncompensated antiferromagnetic moments. Time-dependent phenomena (ageing and memory effects) are only evidenced below the spin freezing transition, evidencing that solely this low-temperature disordered phase is driven by the frustration of RKKY exchange interactions. Consequently, GdCu 2 nanoparticles display a dual disorder-driven magnetic dynamics, which are the one ascribed to the magnetically frustrated moments located at the nanoparticle surface; and that of uncompensated antiferromagnetic moments located within the nanoparticle core.
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