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Subpicosecond Optical Stress Generation in Multiferroic BiFeO 3 .

Hyeon Jun LeeYoungjun AhnSamuel D MarksDeepankar Sri GyanEric C LandahlJun Young LeeTae Yeon KimSanjith UnithrattilSae Hwan ChunSunam KimSang-Youn ParkIntae EomCarolina AdamoDarrell G SchlomHaidan WenSooheyong LeeJi Young JoPaul G Evans
Published in: Nano letters (2022)
Optical excitation leads to ultrafast stress generation in the prototypical multiferroic BiFeO 3 . The time scales of stress generation are set by the dynamics of the population of excited electronic states and the coupling of the electronic configuration to the structure. X-ray free-electron laser diffraction reveals high-wavevector subpicosecond-time scale stress generation following ultraviolet excitation of a BiFeO 3 thin film. Stress generation includes a fast component with a 1/e rise time with an upper limit of 300 fs and longer-rise time components extending to 1.5 ps. The contributions of the fast and delayed components vary as a function of optical fluence, with a reduced a fast-component contribution at high fluence. The results provide insight into stress-generation mechanisms linked to the population of excited electrons and point to new directions in the application of nanoscale multiferroics and related ferroic complex oxides. The fast component of the stress indicates that structural parameters and properties of ferroelectric thin film materials can be optically modulated with 3 dB bandwidths of at least 0.5 THz.
Keyphrases
  • high resolution
  • stress induced
  • high speed
  • heat stress
  • energy transfer
  • computed tomography
  • electron transfer