| Literature DB >> 25494081 |
S Zapf1, C Stingl2, K W Post3, J Maiwald4, N Bach2, I Pietsch2, D Neubauer1, A Löhle1, C Clauss1, S Jiang1, H S Jeevan5, D N Basov3, P Gegenwart4, M Dressel1.
Abstract
Our comprehensive study on EuFe_{2}As_{2} reveals a dramatic reduction of magnetic detwinning fields compared to other AFe_{2}As_{2} (A=Ba, Sr, Ca) iron pnictides by indirect magnetoelastic coupling of the Eu^{2+} ions. We find that only ∼0.1 T are sufficient for persistent detwinning below the local Eu^{2+} ordering; above T_{Eu}=19 K, higher fields are necessary. Even after the field is switched off, a significant imbalance of twin domains remains constant up to the structural and electronic phase transition (190 K). This persistent detwinning provides the unique possibility to study the low temperature electronic in-plane anisotropy of iron pnictides without applying any symmetry-breaking external force.Entities:
Year: 2014 PMID: 25494081 DOI: 10.1103/PhysRevLett.113.227001
Source DB: PubMed Journal: Phys Rev Lett ISSN: 0031-9007 Impact factor: 9.161