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  • Bragg grating  (1)
  • two-beam interference  (1)
  • 1
    ISSN: 1349-9432
    Keywords: Bragg grating ; ultrashort pulses ; refractive index change ; self-focusing ; zone plate ; fabricating
    Source: Springer Online Journal Archives 1860-2000
    Topics: Physics
    Notes: Abstract It is known that local refractive index change occurs when femtosecond laser pulses with extremely high peak power are launched into glass. We focused 130-femtosecond laser pulses of 800 nm into the bulk of glass and examined the shape of the induced refractive index change. We found that the length of the spot of the refractive index change along the optical axis reached about 30 μm despite the diameter being about 2 μm. To estimate the distribution of induced refractive index change, we fabricated Bragg grating by scanning the focused spot and calculated the amount of the change by applying Kogelnik’s coupled mode theory to the measured diffraction efficiencies of the higher order diffracted beams.
    Type of Medium: Electronic Resource
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  • 2
    ISSN: 1573-4846
    Keywords: chemical modification ; photosensitivity ; ZrO2 films ; diffraction gratings ; two-beam interference ; method
    Source: Springer Online Journal Archives 1860-2000
    Topics: Chemistry and Pharmacology
    Notes: Abstract Diffraction gratings of arbitrary periods have been fabricated by the two-beam interference method using photosensitive ZrO2 gel films and characterized. The ZrO2 gel films were formed on Si or silica glass substrates from sols that were derived from Zr-butoxide modified chemically with benzoylacetone. The gel films were irradiated with two interference beams from a He-Cd laser (325 nm) and then leached in ethyl alcohol. The above process gave uniform surface-relief gratings of periods ranging from 1.0 to 0.5 μm, depending on the incidence angle of the interference beams. The diffraction efficiency, measured in the Littrow configuration using a He-Ne laser (633 nm), showed polarization dependence for the grating of 0.5 μm period but not for the gratings of 1.0 μm period. The maximum diffraction efficiency was 18% for the grating of 1.0 μm period and 28% for that of 0.5 μm period in the reflection mode. The present study has proved that the photosensitive gel films are versatile in fabrication of optical devices.
    Type of Medium: Electronic Resource
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