Department of Materials Science and Engineering, University of Wisconsin-Madison, Madison, Wisconsin 53706, USA.
National Synchrotron Radiation Laboratory, University of Science and Technology of China, Hefei, Anhui 230026, China.
Phys Rev Lett. 2019 Jul 26;123(4):045703. doi: 10.1103/PhysRevLett.123.045703.
Above-band-gap optical illumination of compressively strained BiFeO_{3} induces a transient reversible transformation from a state of coexisting tilted tetragonal-like and rhombohedral-like phases to an untilted tetragonal-like phase. Time-resolved synchrotron x-ray diffraction reveals that the transformation is induced by an ultrafast optically induced lattice expansion that shifts the relative free energies of the tetragonal-like and rhombohedral-like phases. The transformation proceeds at interfaces between regions of the tetragonal-like phase and regions of a mixture of tilted phases, consistent with the motion of a phase boundary. The optically induced transformation demonstrates that there are new optically driven routes towards nanosecond-scale control of phase transformations in ferroelectrics and multiferroics.
带隙以上的光照射压缩应变 BiFeO_3 会引起从共存的倾斜四方相和菱方相到非倾斜四方相的瞬态可逆转变。时间分辨同步加速器 X 射线衍射表明,该转变是由超快光致晶格膨胀引起的,该膨胀改变了四方相和菱方相的相对自由能。该转变在四方相区域和倾斜相混合区域之间的界面处进行,与相界的运动一致。光致转变表明,在铁电体和多铁体中,存在新的光驱动途径,可以实现纳秒级的相转变控制。