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- W1994847358 abstract "Submicron ripples have been observed on a borosilicate glass surface when irradiated by a nanosecond Nd: yttritium–aluminum–garnet laser (10 ns, 1064 nm), using silica nanospheres. The ripples thus obtained do not satisfy Rayleigh’s diffraction condition in that (a) the ripple spacing is different from the value predicted by the classical model, (b) the spacing is independent of the incident angle, and (c) the orientation is not always perpendicular to the laser polarization. Also, the ripple characteristics are not dependent on the diameter of the spheres used and the ripples have almost the same periodicity irrespective of the experimental parameters. Photoionization followed by a self-organization process due to nonlinear absorption of the enhanced optical field between the spheres and glass sample is believed to be the primary reason for the creation of ripples on the glass substrate." @default.
- W1994847358 created "2016-06-24" @default.
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- W1994847358 date "2004-04-16" @default.
- W1994847358 modified "2023-09-27" @default.
- W1994847358 title "Submicron ripple formation on glass surface upon laser-nanosphere interaction" @default.
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- W1994847358 doi "https://doi.org/10.1063/1.1690858" @default.
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