arrow
Return

Continuous magnetic phase transition in artificial square ice

delete2019-06-20
delete43
delete
OA
AI
O
Oles Sendetskyi
V
Valerio Scagnoli *
N
Naëmi Leo
L
Luca Anghinolfi
A
A. Alberca
L
Luening, Jan
U
U. Staub
P
P. M. Derlet
L
Laura J. Heyderman
DOI:10.1103/PhysRevB.99.214430delete
deleteOriginal
deleteShare
deleteSave
View PDF
Abstract

Abstract

En 中文
Critical behavior is very common in many fields of science and a wide variety of many-body systems exhibit emergent critical phenomena. The beauty of critical phase transitions lies in their scale-free properties, such that the temperature dependence of physical parameters of systems differing at the microscopic scale can be described by the same generic power laws. In this work we establish the critical properties of the antiferromagnetic phase transition in artificial square ice, showing that it belongs to the two-dimensional Ising universality class, which extends the applicability of such concepts from atomistic to mesoscopic magnets. Combining soft x-ray resonant magnetic scattering experiments and Monte Carlo simulations, we characterize the transition to the low-temperature long-range order expected for the artificial square-ice system. By measuring the critical scattering, we provide direct quantitative evidence of a continuous magnetic phase transition, obtaining critical exponents which are compatible with those of the two-dimensional Ising universality class. In addition, by varying the blocking temperature relative to the phase transition temperature, we demonstrate its influence on the out-of-equilibrium dynamics due to critical slowing down at the phase transition.
Keywords:
SPIN-ICE
COULOMB PHASE
POINTS
AI Summary

AI Summary

Key information extracted from the uploaded paper, including a brief overview, abstract, background, key highlights, visual analysis, and future outlook.

Journal

Physical Review B cover
Physical Review B
IF:
3.7
Papers:
15.4W
Citations:
41.0W

Organization

U
University of Fribourg
Scholars:
4.7K
Papers: 4.0K
Citations: 7.5K
S
swiss federal institutes of technology domain
Scholars:
9.0W
Papers: 8.0W
Citations: 163
P
Paul Scherrer Institute
Scholars:
6.9K
Papers: 4.7K
Citations: 1.2W
researcher View more organizations