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- W2024521706 abstract "The electron and hole intraband spectroscopy in GaSe nanoparticles having diameters ranging from 4 to 9 nm is studied by femtosecond transient absorption polarization methods. The results indicate that the transient absorption spectrum in the 500−700 nm region has a size-independent peak at about 600 nm. Polarization results indicate that the absorption anisotropy is small or negative on the blue edge of the spectrum and increases with increasing wavelength. The anisotropy reaches a maximum in the 600 nm region and remains approximately constant out to 700 nm. Smaller particles exhibit smaller (or more negative) anisotropies and a larger wavelength dependence than larger particles. These results are interpreted in terms of a simple effective mass model. Due to the approximately cylindrical symmetry of these two-dimensional particles, the electron and hole states are described by particle-in-a-cylinder wave functions and the optical transitions may be calculated from these wave functions. These calculation..." @default.
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- W2024521706 date "2003-08-30" @default.
- W2024521706 modified "2023-09-27" @default.
- W2024521706 title "Electron and Hole Intraband Spectroscopy of GaSe Nanoparticles" @default.
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- W2024521706 doi "https://doi.org/10.1021/jp034297+" @default.
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