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Spin and phonon anomalies in epitaxial self-assembled CoFe204-BaTi03 multiferroic nanostructures
Journal article   Peer reviewed

Spin and phonon anomalies in epitaxial self-assembled CoFe204-BaTi03 multiferroic nanostructures

C.Y. Tsai, H.M. Cheng, H.R. Chen, K.F. Huang, L.N. Tsai, Y.H. Chu, Y.H. Chu, C.H. Lai and W.F. Hsieh
Applied Physics Letters, Vol.104(25), 252905
23/06/2014

Abstract

Temperature dependent magnetic and phonon anomalies in epitaxial self-assembled CoFe 2 0 4 (CFO) rods embedded in BaTiO 3 (BTO) matrix nanostructures were investigated. The temperature dependence of A1(2TO) phonon frequency of BTO indicates that the BTO matrix experiences structural transformations. The lattice strain produced during the structural transformations drives spin reorientation in CFO rods, resulting in anomalous changes of magnetization. Through correlating the phonon anomalies with the increase of in-plane spin ordering, we show the spin-phonon coupling induces the softening of A1g and A1(2TO) phonons. It suggests that spin strongly couples with lattice strain and phonons in this nanostructure.

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