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[Author] Ichiro OGURA(5hit)

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  • Vertical to Surface Transmission Electro-Photonic Device (VSTEP) and Its Application to Optical Interconnection and Information Processing

    Kenichi KASAHARA  Takahiro NUMAI  Hideo KOSAKA  Ichiro OGURA  Kaori KURIHARA  Mitsunori SUGIMOTO  

     
    PAPER

      Vol:
    E75-C No:1
      Page(s):
    70-80

    The VSTEP concept and its practical application in the form of an LED-type pnpn-VSTEP demonstrating low power consumption through electro-photonic operational modes are both shown. Further, with focus primarily on the new laser-mode VSTEP with high-intensity light output and narrow optical beam divergence, the design features such as threshold gain and optical absorptivity, device fabrication, and characteristics are explained. The possibility of ultimate performance based mainly on electrical to optical power conversion efficiency, important from the application viewpoint of optical interconnection, are also discussed. Also, as two examples of functional optical interconnection achieved by VSTEP, serial-to-parallel data conversion and optical self-routing switches are shown. Finally, future opto-electronic technologies to be developed for two-dimensionally integrable surface-type optical semiconductor devices, including the VSTEP, are discussed.

  • Optical Switching Networks Using Free-Space Wavelength-Division Multiplexing Interconnections

    Shigeru KAWAI  Hisakazu KURITA  Ichiro OGURA  

     
    PAPER

      Vol:
    E78-C No:1
      Page(s):
    81-84

    Wavelength-division multiplexing (WDM) optical switching networks are one of most attractive technologies in optical interconnections. By combining with time-division multiplexing (TDM) and space-division multiplexing (SDM) technologies, remarkably high-throughput interconnections may be accomplished. In this paper, we propose WDM switching networks with time-division multiplexed optical signals by using free-space optics. We also propose novel WDM interconnections, including multiple-wavelength light-sources, optical fibers and wavelength-selectable detectors. We successfully confirmed basic principles for the WDM interconnections.

  • Ultrafast All-Optical Signal Processing with Mode-Locked Semiconductor Lasers

    Hisakazu KURITA  Ichiro OGURA  Hiroyuki YOKOYAMA  

     
    INVITED PAPER-Mode-locked and Gain-switched Laser Diodes and High speed EA Modulators

      Vol:
    E81-C No:2
      Page(s):
    129-139

    The novel application potential of mode-locked laser diodes (MLLDs) in ultrafast optical signal processing in addition to coherent optical pulse generation is described. As the most fundamental function of MLLDs, we show that the generation of ultrashort (2 ps) coherent optical pulses with low timing jitter (<0. 5 ps) at precisely controlled wavelength and repetition frequency can be achieved by employing a rigid module configuration for an external-cavity MLLD. We then discuss new aspects of MLLDs which are functions of ultrafast all-optical signal processing such as optical clock extraction and optical gating. All-optical clock extraction is based on the timing synchronization of MLLD output to the injected optical data pulse. When the passive mode-locking frequency of an MLLD is very close to the fundamental clock pulse frequency of optical data, the former frequency is pulled into the latter frequency by optical data injection. We show that same-frequency and subharmonic-frequency optical clock pulses can successfully be extracted from optical data pulses at bit rates of up to 80 Gbit/s with very simple configurations and very low excess timing jitter (<0. 1 ps). On the other hand, optical gating is due to absorption saturation and the following picosecond absorption recovery in a saturable absorber (SA) in an MLLD structure incorporating optical gate-pulse amplification. Here, MLLDs are anti-reflection coated and used as traveling wave devices instead of laser oscillators, and small saturation energy (<1 pJ) and ultrafast recovery time (<8 ps) are demonstrated. By combining all these MLLD functions, we successfully demonstrated an experiment with 40- to 10-Gbit/s all-optical demultiplexing processing.

  • Vertical to Surface Transmission Electro-Photonic Device (VSTEP) and Its Application to Optical Interconnection and Information Processing

    Kenichi KASAHARA  Takahiro NUMAI  Hideo KOSAKA  Ichiro OGURA  Kaori KURIHARA  Mitsunori SUGIMOTO  

     
    PAPER

      Vol:
    E75-A No:1
      Page(s):
    72-82

    The VSTEP concept and its practical application in the form of an LED-type pnpn-VSTEP demonstrating low power consumption through electro-photonic operational modes are both shown. Further, with focus primarily on the new laser-mode VSTEP with high-intensity light output and narrow optical beam divergence, the design features such as threshold gain and optical absorptivity, device fabrication, and characteristics are explained. The possibility of ultimate performance based mainly on electrical to optical power conversion efficiency, important from the application viewpoint of optical interconnection, are also discussed. Also, as two examples of functional optical interconnection achieved by VSTEP, serial-to-parallel data conversion and optical self-routing switches are shown. Finally, future opto-electronic technologies to be developed for two-dimensionally integrable surface-type optical semiconductor devices, including the VSTEP, are discussed.

  • A Multiple Wavelength Vertical-Cavity Surface-Emitting Laser (VCSEL) Array for Optical Interconnection

    Ichiro OGURA  Kaori KURIHARA  Shigeru KAWAI  Mikihiro KAJITA  Kenichi KASAHARA  

     
    INVITED PAPER

      Vol:
    E78-C No:1
      Page(s):
    22-27

    We describe an application of InGaAs/AlGaAs VCSELs to multiple wavelength light source for optical interconnection. A flip-chip bonding technique is used to integrate the VCSELs lasing at different wavelengths. The integrated VCSELs of different wavelengths are individually grown and processed, so that one can optimize the device characteristics and the wavelength separation or distribution for multiple wavelength interconnection systems. A 9-wavelength VCSEL array with a wavelength separation of 5 nm has been successfully fabricated.

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