材料科学
铁电性
激发态
多铁性
载流子
光激发
凝聚态物理
物理
电介质
原子物理学
光电子学
作者
Haidan Wen,Pice Chen,Margaret P. Cosgriff,Donald A. Walko,June Hyuk Lee,Carolina Adamo,Richard D. Schaller,Jon F. Ihlefeld,Eric M. Đufresne,Darrell G. Schlom,Paul G. Evans,J. W. Freeland,Yuelin Li
标识
DOI:10.1103/physrevlett.110.037601
摘要
Above-band-gap optical excitation produces interdependent structural and electronic responses in a multiferroic BiFeO(3) thin film. Time-resolved synchrotron x-ray diffraction shows that photoexcitation can induce a large out-of-plane strain, with magnitudes on the order of half of one percent following pulsed-laser excitation. The strain relaxes with the same nanosecond time dependence as the interband relaxation of excited charge carriers. The magnitude of the strain and its temporal correlation with excited carriers indicate that an electronic mechanism, rather than thermal effects, is responsible for the lattice expansion. The observed strain is consistent with a piezoelectric distortion resulting from partial screening of the depolarization field by charge carriers, an effect linked to the electronic transport of excited carriers. The nonthermal generation of strain via optical pulses promises to extend the manipulation of ferroelectricity in oxide multiferroics to subnanosecond time scales.
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