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[Author] Satoshi SAITO(2hit)

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  • High Performance Organic Semiconductors with High Field-Effect Mobilities and Low Contact Resistances for Flexible Displays Open Access

    Kota TERAI  Emi KAWASHIMA  Naoki KURIHARA  Hideaki NAGASHIMA  Hirofumi KONDO  Masatoshi SAITO  Hiroaki NAKAMURA  

     
    INVITED PAPER

      Vol:
    E94-C No:11
      Page(s):
    1713-1719

    We have succeeded in developing high-performance p-type of organic semiconductors with phenylethynyl groups, which have high filed-effect mobilities (>3 cm2V-1s-1) by improving molecular planarity. A single crystal of the organic semiconductors has a herringbone structure. It plays an important role for carrier transport. In addition, we found that they had lower contact resistances to Au electrodes as well. Then, we used the materials for the carrier injection layer deposited onto another organic semiconductor we developed recently, which achieved a high field-effect mobility, and a low threshold voltage (Vth).

  • Sub-100 fs Higher Order Soliton Compression in Dispersion-Flattened Fibers

    Masahiro TSUCHIYA  Koji IGARASHI  Satoshi SAITO  Masato KISHI  

     
    INVITED PAPER-Optical Pulse Compression, Control and Monitoring

      Vol:
    E85-C No:1
      Page(s):
    141-149

    We review recent progresses in our studies on the fiber-optic soliton compression and related subjects with special emphasis on dispersion-flattened fibers (DFFs). As for the ultimately short pulse generation, it has been demonstrated to compress 5 ps laser diode pulses down to 20 fs with a 15.1 m-long single-stage step-like dispersion profiled fiber employed. The compression was brought about through a series of the higher order soliton processes in conjunction with a single and ordinary erbium-doped fiber preamplifier, and DFFs contained at its end played a major role. We have performed intensive investigations on the DFF compression mechanisms in the 100-20 fs range. A fairly reliable model was developed for the higher order soliton propagation along a DFF in the temporal range from 100 down to 30 fs by taking into consideration the higher order nonlinear and dispersion effects as well as incident pulse shape dependence. Through the simulation, parametric spectrum generation originating from the modulation instability gain was pointed out at frequencies apart from the pump wave frequency, which agrees with the experimental observation. Its possible application is also discussed.

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