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  1. Article

    Open Access

    Silk Fibroin as Edible Coating for Perishable Food Preservation

    The regeneration of structural biopolymers into micelles or nanoparticles suspended in water has enabled the design of new materials with unique and compelling properties that can serve at the interface betwee...

    B. Marelli, M. A. Brenckle, D. L. Kaplan, F. G. Omenetto in Scientific Reports (2016)

  2. No Access

    Chapter and Conference Paper

    Spectral-temporal soliton dynamics analysis near second zero-dispersion point in photonic crystal fibers

    The propagation dynamics of an ultrashort optical pulse near the second zero-dispersion point of a small-core high-delta photonic crystal fiber is investigated using cross-correlation frequency-resolved optica...

    Anatoly Efimov, A. J. Taylor, F. G. omenetto, N. Joly in Ultrafast Phenomena XIV (2005)

  3. No Access

    Article

    Transformation and control of ultra-short pulses in dispersion-engineered photonic crystal fibres

    Photonic crystal fibres (PCFs) offer greatly enhanced design freedom compared to standard optical fibres. For example, they allow precise control of the chromatic dispersion (CD) profile—the frequency dependen...

    W. H. Reeves, D. V. Skryabin, F. Biancalana, J. C. Knight, P. St. J. Russell in Nature (2003)

  4. No Access

    Article

    Sha**, propagation and characterization of ultrafast pulses in optical fibers

    The characterization of medium- to low-energy shaped pulses at 1.55 μm through frequency-resolved optical gating (FROG) is illustrated. This capability enables the study of ultrafast pulse propagation through ...

    F.G. Omenetto, J.W. Nicholson, B.P. Luce, D. Yarotski, A.J. Taylor in Applied Physics B (2000)

  5. No Access

    Article

    High-brightness terawatt KrF* (248 nm) system

     W/cm2 range with improved shot-to-shot energy stability. This system gives a resulting brightness of ∼3.3×1021 W cm-2 sr-1.

    F.G. Omenetto, K. Boyer, J.W. Longworth, A. McPherson, T. Nelson in Applied Physics B (1997)

  6. No Access

    Chapter

    Design and Analysis of a Deep UV Laser based on Ce3+: LiSrAIF6

    Ce3+:LiSrAlF6 (Ce:LiSAF) has been demonstrated to amplify light between the wavelengths of 285 and 297 mn by several groups. A source in this region of the ultraviolet is attractive for biophysics, physical chemi...

    T. R. Nelson, F. G. Omenetto in High Power Lasers — Science and Engineering (1996)