Ultrafast Spectral Weight Transfer in RBaCo2O6-delta (R=Sm, Gd, and Tb): A Role of Electronic Correlation in Photoinduced Phase Transition

Abstract

We performed femtosecond reflection spectroscopy on a series of perovskite-type cobalt oxide RBaCo2O6-δ (R=Sm, Gd, and Tb) crystals, in which the electronic transfer was controlled by R. The transient reflectivity and the optical conductivity (σ PI(ω)) obtained by Kramers-Kronig analysis showed an ultrafast change within a time resolution (≈ 150 fs) at room temperature and the appearance of signals of a hidden state different from the high temperature metallic state. The transferred spectral weight in σ PI(ω) upon photoexcitation sensitively depended on the R-species, indicating an important role of electronic correlation in the photoexcited state.

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