Laboratorium für Festkörperphysik, Eidgenössische Technische Hochschule Zürich, CH-8093 Zürich, Switzerland.
Facultad de Matemática, Astronomía y Física y Computacion, Universidad Nacional de Córdoba, Instituto de Física Enrique Gaviola (IFEG-CONICET), Ciudad Universitaria, 5000 Córdoba, Argentina.
Nat Commun. 2016 Dec 5;7:13611. doi: 10.1038/ncomms13611.
The paramagnetic-to-ferromagnetic phase transition is classified as a critical phenomenon due to the power-law behaviour shown by thermodynamic observables when the Curie point is approached. Here we report the observation of such a behaviour over extraordinarily many decades of suitable scaling variables in ultrathin Fe films, for certain ranges of temperature T and applied field B. This despite the fact that the underlying critical point is practically unreachable because protected by a phase with a modulated domain structure, induced by the dipole-dipole interaction. The modulated structure has a well-defined spatial period and is realized in a portion of the (T, B) plane that extends above the putative critical temperature, where thermodynamic quantities do not display any singularity. Our results imply that scaling behaviour of macroscopic observables is compatible with an avoided critical point.
顺磁-铁磁相变因其在居里点附近表现出热力学量的幂律行为而被归类为临界现象。在此,我们报告了在超薄 Fe 薄膜中,在温度 T 和外加磁场 B 的某些范围内,通过适当的标度变量,观察到了这种行为,跨越了许多个数量级。尽管如此,由于受偶极子相互作用诱导的具有调制畴结构的相的保护,实际无法达到临界点。调制结构具有确定的空间周期,并在(T,B)平面的一部分中实现,该部分延伸到假定的临界温度之上,在该温度下,热力学量不显示任何奇异现象。我们的结果表明,宏观可观测量的标度行为与避免临界点是兼容的。