vix.ing · top · new · best · stats

Structural distortion and incommensurate noncollinear magnetism inEuAg4As2

2018/09/30 by Bing Shen, Chaowei Hu, Huibo Cao +4 · 21 citations
Materials Science · Physics and Astronomy · #Antiferromagnetism #Coupling (piping) #Distortion (music) #Iron-based superconductors research #Magnetic moment #Magnetic structure #Magnetism #Neutron diffraction #Pnictogen #Rare-earth and actinide compounds #Superconductivity in MgB2 and Alloys #Superlattice #cond-mat.mtrl-sci #cond-mat.str-el

paper · pdf · doi:10.1103/physrevmaterials.4.064419

published in Physical Review Materials 4(6) (American Physical Society)

openalex created_date 2018/09/27 · arxiv created 2020/06/03 · openalex publication_date 2020/06/25 · arxiv updated 2020/07/01 · openalex updated_date 2026/08/05

Abstract

Layered pnictide materials have provided a fruitful platform to study various emergent phenomena, including superconductivity, magnetism, charge density waves, etc. Here we report the observation of structural distortion and noncollinear magnetism in layered pnictide EuAg4As2 via transport, magnetization, single crystal x-ray, and neutron diffraction data. EuAg4As2 single crystal shows a structural distortion at 120 K, where two sets of superlattice peaks with the propagation vectors of q1=\ifmmode±\else\textpm\fi(0, 0.25, 0.5) and q2=\ifmmode±\else\textpm\fi(0.25, 0, 1) emerge. Between 9--15 K, the hexagonal Eu2+ sublattice enters an unpinned incommensurate magnetic state, with magnetic Bragg reflections pictured as circular sectors. Below 9 K, it orders in an incommensurate noncollinear antiferromagnetic state with a well-defined propagation wavevector of (0, 0.1, 0.12) and a very rare magnetic structure, which is helical along the c axis and cycloidal along the b axis with a moment of 6.4 \ensuremathμB/Eu2+. Furthermore, rich magnetic phases under magnetic fields, large magnetoresistance, and strong coupling between charge carriers and magnetism in EuAg4As2 are revealed.

Citations