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      Self-focusing property of a laser beam interacting with a lattice of nanoparticles in the presence of a planar magnetostatic wiggler

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      Journal of Applied Physics
      AIP Publishing

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          Optically produced arrays of planar nanostructures inside fused silica.

          Linearly polarized femtosecond light pulses, focused inside fused silica to an intensity that leads to multiphoton ionization, produce arrayed planes of modified material having their normal parallel to the laser polarization. The planes are < or = 10 nm thick and are spaced at approximately lambda/2 in the medium for free space wavelengths of both 800 and 400 nm. By slowly scanning the sample under a fixed laser focus, order is maintained over macroscopic distances for all angles between the polarization and scan direction. With the laser polarization parallel to the scan direction we produce long-range Bragg-like gratings. We discuss how local field enhancement influences dielectric ionization, describe how this leads to nanoplane growth, why the planes are arrayed, and how long-range order is maintained.
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            Generation of nanoparticles by spark discharge

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              Theoretical study of heating of spherical nanoparticle in media by short laser pulses

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                Author and article information

                Journal
                Journal of Applied Physics
                Journal of Applied Physics
                AIP Publishing
                0021-8979
                1089-7550
                March 21 2017
                March 21 2017
                : 121
                : 11
                : 113106
                Article
                10.1063/1.4978382
                5fb68fc6-ecce-417f-82da-a7a25673750d
                © 2017
                History

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