Matsubara M, Okimoto Y, Ogasawara T, Tomioka Y, Okamoto H, Tokura Y
Correlated Electron Research Center, National Institute of Advanced Industrial Science and Technology, Tsukuba 305-8562, Japan.
Phys Rev Lett. 2007 Nov 16;99(20):207401. doi: 10.1103/PhysRevLett.99.207401. Epub 2007 Nov 15.
We have investigated the ultrafast spin and charge dynamics in the course of a photoinduced phase transition from an insulator with short-range charge order and orbital order (OO) to a ferromagnetic metal in perovskite-type Gd0.55Sr0.45MnO3. Transient reflectivity changes suggest that the metallic state is formed just after the photoirradiation and decays within approximately 1 ps. The magnetization, however, increases with the time constant of 0.5 ps and decays in approximately 10 ps. The relatively slow increase of the magnetization is attributable to the magnetic-field-induced alignment of ferromagnetic domains in the initially produced metallic state and its slow decay to the partial recovery of the OO.
我们研究了钙钛矿型Gd0.55Sr0.45MnO3中从具有短程电荷序和轨道序(OO)的绝缘体到铁磁金属的光致相变过程中的超快自旋和电荷动力学。瞬态反射率变化表明,金属态在光照射后立即形成,并在大约1皮秒内衰减。然而,磁化强度以0.5皮秒的时间常数增加,并在大约10皮秒内衰减。磁化强度相对缓慢的增加归因于在初始产生的金属态中铁磁畴的磁场诱导排列,以及其缓慢衰减至OO的部分恢复。