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- W2895789043 abstract "Femtosecond studies of highly excited electrons in aluminum alloy 2024 were performed. Two ablation regimes were found in the logarithmic dependence of the ablated depth on laser fluence and two components were attributed to the optical and energy penetration. A thermal dynamic model was adopted to analyze the electron-lattice coupling, and the theoretical analysis agreed well with the experimental results. The surface micrographs of the scanning electron microscopy (SEM) were characterized as a function of incident laser fluence. The surface features ranging from submicron to microns were developed through the variation in laser fluence and count of laser pulse. Results indicated that surface patterns were uniquely constructed in a controlled use of pulsed laser parameters for surface structuring.Femtosecond studies of highly excited electrons in aluminum alloy 2024 were performed. Two ablation regimes were found in the logarithmic dependence of the ablated depth on laser fluence and two components were attributed to the optical and energy penetration. A thermal dynamic model was adopted to analyze the electron-lattice coupling, and the theoretical analysis agreed well with the experimental results. The surface micrographs of the scanning electron microscopy (SEM) were characterized as a function of incident laser fluence. The surface features ranging from submicron to microns were developed through the variation in laser fluence and count of laser pulse. Results indicated that surface patterns were uniquely constructed in a controlled use of pulsed laser parameters for surface structuring." @default.
- W2895789043 created "2018-10-26" @default.
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- W2895789043 date "2001-01-01" @default.
- W2895789043 modified "2023-09-27" @default.
- W2895789043 title "Femtosecond study on surface modification of aluminum alloy" @default.
- W2895789043 doi "https://doi.org/10.2351/1.5059827" @default.
- W2895789043 hasPublicationYear "2001" @default.
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