The Experts below are selected from a list of 303 Experts worldwide ranked by ideXlab platform

M. Mukaikubo - One of the best experts on this subject based on the ideXlab platform.

  • 40-Gb/s Direct Modulation With High Extinction Ratio Operation of 1.3- $\mu$ m InGaAlAs Multiquantum Well Ridge Waveguide Distributed Feedback Lasers
    IEEE Photonics Technology Letters, 2007
    Co-Authors: Kouji Nakahara, Tsutomu Kikawa, Kazunori Shinoda, Takeshi Kitatani, T. Tsuchiya, M. Aoki, T Taniguchi, M. Mukaikubo
    Abstract:

    Direct modulation at 40 Gb/s of a 1.3-mum InGaAlAs distributed feedback ridge waveguide laser is experimentally demonstrated. By combination of the high differential gain of an InGaAlAs multiquantum well active layer, a short cavity length of 100 mum, and a low-resistance notch-free grating, it achieves high bandwidth of 29 GHz and high-extinction ratio of 5 dB at 40-Gb/s modulation. Moreover, the laser operates at a record Maximum Ambient Temperature of 60degC under 40-Gb/s directly modulation. It also achieves 40-Gb/s modulated transmission over 2 km with a low power penalty of 0.25 dB at 25degC .

  • 40 gb s direct modulation with high extinction ratio operation of 1 3 mu m ingaalas multiquantum well ridge waveguide distributed feedback lasers
    IEEE Photonics Technology Letters, 2007
    Co-Authors: Kouji Nakahara, Tsutomu Kikawa, Kazunori Shinoda, Takeshi Kitatani, T. Tsuchiya, M. Aoki, T Taniguchi, M. Mukaikubo
    Abstract:

    Direct modulation at 40 Gb/s of a 1.3-mum InGaAlAs distributed feedback ridge waveguide laser is experimentally demonstrated. By combination of the high differential gain of an InGaAlAs multiquantum well active layer, a short cavity length of 100 mum, and a low-resistance notch-free grating, it achieves high bandwidth of 29 GHz and high-extinction ratio of 5 dB at 40-Gb/s modulation. Moreover, the laser operates at a record Maximum Ambient Temperature of 60degC under 40-Gb/s directly modulation. It also achieves 40-Gb/s modulated transmission over 2 km with a low power penalty of 0.25 dB at 25degC .

  • 40-Gb/s direct modulation with high extinction ratio operation of 1.3-μm InGaAlAs multiquantum well ridge waveguide distributed feedback lasers
    IEEE Photonics Technology Letters, 2007
    Co-Authors: Kouji Nakahara, Tsutomu Kikawa, Kazunori Shinoda, Takeshi Kitatani, T. Tsuchiya, M. Aoki, T Taniguchi, M. Mukaikubo
    Abstract:

    Direct modulation at 40 Gb/s of a 1.3-mum InGaAlAs distributed feedback ridge waveguide laser is experimentally demonstrated. By combination of the high differential gain of an InGaAlAs multiquantum well active layer, a short cavity length of 100 mum, and a low-resistance notch-free grating, it achieves high bandwidth of 29 GHz and high-extinction ratio of 5 dB at 40-Gb/s modulation. Moreover, the laser operates at a record Maximum Ambient Temperature of 60degC under 40-Gb/s directly modulation. It also achieves 40-Gb/s modulated transmission over 2 km with a low power penalty of 0.25 dB at 25degC .

Kouji Nakahara - One of the best experts on this subject based on the ideXlab platform.

  • 40-Gb/s Direct Modulation With High Extinction Ratio Operation of 1.3- $\mu$ m InGaAlAs Multiquantum Well Ridge Waveguide Distributed Feedback Lasers
    IEEE Photonics Technology Letters, 2007
    Co-Authors: Kouji Nakahara, Tsutomu Kikawa, Kazunori Shinoda, Takeshi Kitatani, T. Tsuchiya, M. Aoki, T Taniguchi, M. Mukaikubo
    Abstract:

    Direct modulation at 40 Gb/s of a 1.3-mum InGaAlAs distributed feedback ridge waveguide laser is experimentally demonstrated. By combination of the high differential gain of an InGaAlAs multiquantum well active layer, a short cavity length of 100 mum, and a low-resistance notch-free grating, it achieves high bandwidth of 29 GHz and high-extinction ratio of 5 dB at 40-Gb/s modulation. Moreover, the laser operates at a record Maximum Ambient Temperature of 60degC under 40-Gb/s directly modulation. It also achieves 40-Gb/s modulated transmission over 2 km with a low power penalty of 0.25 dB at 25degC .

  • 40 gb s direct modulation with high extinction ratio operation of 1 3 mu m ingaalas multiquantum well ridge waveguide distributed feedback lasers
    IEEE Photonics Technology Letters, 2007
    Co-Authors: Kouji Nakahara, Tsutomu Kikawa, Kazunori Shinoda, Takeshi Kitatani, T. Tsuchiya, M. Aoki, T Taniguchi, M. Mukaikubo
    Abstract:

    Direct modulation at 40 Gb/s of a 1.3-mum InGaAlAs distributed feedback ridge waveguide laser is experimentally demonstrated. By combination of the high differential gain of an InGaAlAs multiquantum well active layer, a short cavity length of 100 mum, and a low-resistance notch-free grating, it achieves high bandwidth of 29 GHz and high-extinction ratio of 5 dB at 40-Gb/s modulation. Moreover, the laser operates at a record Maximum Ambient Temperature of 60degC under 40-Gb/s directly modulation. It also achieves 40-Gb/s modulated transmission over 2 km with a low power penalty of 0.25 dB at 25degC .

  • 40-Gb/s direct modulation with high extinction ratio operation of 1.3-μm InGaAlAs multiquantum well ridge waveguide distributed feedback lasers
    IEEE Photonics Technology Letters, 2007
    Co-Authors: Kouji Nakahara, Tsutomu Kikawa, Kazunori Shinoda, Takeshi Kitatani, T. Tsuchiya, M. Aoki, T Taniguchi, M. Mukaikubo
    Abstract:

    Direct modulation at 40 Gb/s of a 1.3-mum InGaAlAs distributed feedback ridge waveguide laser is experimentally demonstrated. By combination of the high differential gain of an InGaAlAs multiquantum well active layer, a short cavity length of 100 mum, and a low-resistance notch-free grating, it achieves high bandwidth of 29 GHz and high-extinction ratio of 5 dB at 40-Gb/s modulation. Moreover, the laser operates at a record Maximum Ambient Temperature of 60degC under 40-Gb/s directly modulation. It also achieves 40-Gb/s modulated transmission over 2 km with a low power penalty of 0.25 dB at 25degC .

Tsutomu Kikawa - One of the best experts on this subject based on the ideXlab platform.

  • 40-Gb/s Direct Modulation With High Extinction Ratio Operation of 1.3- $\mu$ m InGaAlAs Multiquantum Well Ridge Waveguide Distributed Feedback Lasers
    IEEE Photonics Technology Letters, 2007
    Co-Authors: Kouji Nakahara, Tsutomu Kikawa, Kazunori Shinoda, Takeshi Kitatani, T. Tsuchiya, M. Aoki, T Taniguchi, M. Mukaikubo
    Abstract:

    Direct modulation at 40 Gb/s of a 1.3-mum InGaAlAs distributed feedback ridge waveguide laser is experimentally demonstrated. By combination of the high differential gain of an InGaAlAs multiquantum well active layer, a short cavity length of 100 mum, and a low-resistance notch-free grating, it achieves high bandwidth of 29 GHz and high-extinction ratio of 5 dB at 40-Gb/s modulation. Moreover, the laser operates at a record Maximum Ambient Temperature of 60degC under 40-Gb/s directly modulation. It also achieves 40-Gb/s modulated transmission over 2 km with a low power penalty of 0.25 dB at 25degC .

  • 40 gb s direct modulation with high extinction ratio operation of 1 3 mu m ingaalas multiquantum well ridge waveguide distributed feedback lasers
    IEEE Photonics Technology Letters, 2007
    Co-Authors: Kouji Nakahara, Tsutomu Kikawa, Kazunori Shinoda, Takeshi Kitatani, T. Tsuchiya, M. Aoki, T Taniguchi, M. Mukaikubo
    Abstract:

    Direct modulation at 40 Gb/s of a 1.3-mum InGaAlAs distributed feedback ridge waveguide laser is experimentally demonstrated. By combination of the high differential gain of an InGaAlAs multiquantum well active layer, a short cavity length of 100 mum, and a low-resistance notch-free grating, it achieves high bandwidth of 29 GHz and high-extinction ratio of 5 dB at 40-Gb/s modulation. Moreover, the laser operates at a record Maximum Ambient Temperature of 60degC under 40-Gb/s directly modulation. It also achieves 40-Gb/s modulated transmission over 2 km with a low power penalty of 0.25 dB at 25degC .

  • 40-Gb/s direct modulation with high extinction ratio operation of 1.3-μm InGaAlAs multiquantum well ridge waveguide distributed feedback lasers
    IEEE Photonics Technology Letters, 2007
    Co-Authors: Kouji Nakahara, Tsutomu Kikawa, Kazunori Shinoda, Takeshi Kitatani, T. Tsuchiya, M. Aoki, T Taniguchi, M. Mukaikubo
    Abstract:

    Direct modulation at 40 Gb/s of a 1.3-mum InGaAlAs distributed feedback ridge waveguide laser is experimentally demonstrated. By combination of the high differential gain of an InGaAlAs multiquantum well active layer, a short cavity length of 100 mum, and a low-resistance notch-free grating, it achieves high bandwidth of 29 GHz and high-extinction ratio of 5 dB at 40-Gb/s modulation. Moreover, the laser operates at a record Maximum Ambient Temperature of 60degC under 40-Gb/s directly modulation. It also achieves 40-Gb/s modulated transmission over 2 km with a low power penalty of 0.25 dB at 25degC .

T Taniguchi - One of the best experts on this subject based on the ideXlab platform.

  • 40-Gb/s Direct Modulation With High Extinction Ratio Operation of 1.3- $\mu$ m InGaAlAs Multiquantum Well Ridge Waveguide Distributed Feedback Lasers
    IEEE Photonics Technology Letters, 2007
    Co-Authors: Kouji Nakahara, Tsutomu Kikawa, Kazunori Shinoda, Takeshi Kitatani, T. Tsuchiya, M. Aoki, T Taniguchi, M. Mukaikubo
    Abstract:

    Direct modulation at 40 Gb/s of a 1.3-mum InGaAlAs distributed feedback ridge waveguide laser is experimentally demonstrated. By combination of the high differential gain of an InGaAlAs multiquantum well active layer, a short cavity length of 100 mum, and a low-resistance notch-free grating, it achieves high bandwidth of 29 GHz and high-extinction ratio of 5 dB at 40-Gb/s modulation. Moreover, the laser operates at a record Maximum Ambient Temperature of 60degC under 40-Gb/s directly modulation. It also achieves 40-Gb/s modulated transmission over 2 km with a low power penalty of 0.25 dB at 25degC .

  • 40 gb s direct modulation with high extinction ratio operation of 1 3 mu m ingaalas multiquantum well ridge waveguide distributed feedback lasers
    IEEE Photonics Technology Letters, 2007
    Co-Authors: Kouji Nakahara, Tsutomu Kikawa, Kazunori Shinoda, Takeshi Kitatani, T. Tsuchiya, M. Aoki, T Taniguchi, M. Mukaikubo
    Abstract:

    Direct modulation at 40 Gb/s of a 1.3-mum InGaAlAs distributed feedback ridge waveguide laser is experimentally demonstrated. By combination of the high differential gain of an InGaAlAs multiquantum well active layer, a short cavity length of 100 mum, and a low-resistance notch-free grating, it achieves high bandwidth of 29 GHz and high-extinction ratio of 5 dB at 40-Gb/s modulation. Moreover, the laser operates at a record Maximum Ambient Temperature of 60degC under 40-Gb/s directly modulation. It also achieves 40-Gb/s modulated transmission over 2 km with a low power penalty of 0.25 dB at 25degC .

  • 40-Gb/s direct modulation with high extinction ratio operation of 1.3-μm InGaAlAs multiquantum well ridge waveguide distributed feedback lasers
    IEEE Photonics Technology Letters, 2007
    Co-Authors: Kouji Nakahara, Tsutomu Kikawa, Kazunori Shinoda, Takeshi Kitatani, T. Tsuchiya, M. Aoki, T Taniguchi, M. Mukaikubo
    Abstract:

    Direct modulation at 40 Gb/s of a 1.3-mum InGaAlAs distributed feedback ridge waveguide laser is experimentally demonstrated. By combination of the high differential gain of an InGaAlAs multiquantum well active layer, a short cavity length of 100 mum, and a low-resistance notch-free grating, it achieves high bandwidth of 29 GHz and high-extinction ratio of 5 dB at 40-Gb/s modulation. Moreover, the laser operates at a record Maximum Ambient Temperature of 60degC under 40-Gb/s directly modulation. It also achieves 40-Gb/s modulated transmission over 2 km with a low power penalty of 0.25 dB at 25degC .

Kazunori Shinoda - One of the best experts on this subject based on the ideXlab platform.

  • 40-Gb/s Direct Modulation With High Extinction Ratio Operation of 1.3- $\mu$ m InGaAlAs Multiquantum Well Ridge Waveguide Distributed Feedback Lasers
    IEEE Photonics Technology Letters, 2007
    Co-Authors: Kouji Nakahara, Tsutomu Kikawa, Kazunori Shinoda, Takeshi Kitatani, T. Tsuchiya, M. Aoki, T Taniguchi, M. Mukaikubo
    Abstract:

    Direct modulation at 40 Gb/s of a 1.3-mum InGaAlAs distributed feedback ridge waveguide laser is experimentally demonstrated. By combination of the high differential gain of an InGaAlAs multiquantum well active layer, a short cavity length of 100 mum, and a low-resistance notch-free grating, it achieves high bandwidth of 29 GHz and high-extinction ratio of 5 dB at 40-Gb/s modulation. Moreover, the laser operates at a record Maximum Ambient Temperature of 60degC under 40-Gb/s directly modulation. It also achieves 40-Gb/s modulated transmission over 2 km with a low power penalty of 0.25 dB at 25degC .

  • 40 gb s direct modulation with high extinction ratio operation of 1 3 mu m ingaalas multiquantum well ridge waveguide distributed feedback lasers
    IEEE Photonics Technology Letters, 2007
    Co-Authors: Kouji Nakahara, Tsutomu Kikawa, Kazunori Shinoda, Takeshi Kitatani, T. Tsuchiya, M. Aoki, T Taniguchi, M. Mukaikubo
    Abstract:

    Direct modulation at 40 Gb/s of a 1.3-mum InGaAlAs distributed feedback ridge waveguide laser is experimentally demonstrated. By combination of the high differential gain of an InGaAlAs multiquantum well active layer, a short cavity length of 100 mum, and a low-resistance notch-free grating, it achieves high bandwidth of 29 GHz and high-extinction ratio of 5 dB at 40-Gb/s modulation. Moreover, the laser operates at a record Maximum Ambient Temperature of 60degC under 40-Gb/s directly modulation. It also achieves 40-Gb/s modulated transmission over 2 km with a low power penalty of 0.25 dB at 25degC .

  • 40-Gb/s direct modulation with high extinction ratio operation of 1.3-μm InGaAlAs multiquantum well ridge waveguide distributed feedback lasers
    IEEE Photonics Technology Letters, 2007
    Co-Authors: Kouji Nakahara, Tsutomu Kikawa, Kazunori Shinoda, Takeshi Kitatani, T. Tsuchiya, M. Aoki, T Taniguchi, M. Mukaikubo
    Abstract:

    Direct modulation at 40 Gb/s of a 1.3-mum InGaAlAs distributed feedback ridge waveguide laser is experimentally demonstrated. By combination of the high differential gain of an InGaAlAs multiquantum well active layer, a short cavity length of 100 mum, and a low-resistance notch-free grating, it achieves high bandwidth of 29 GHz and high-extinction ratio of 5 dB at 40-Gb/s modulation. Moreover, the laser operates at a record Maximum Ambient Temperature of 60degC under 40-Gb/s directly modulation. It also achieves 40-Gb/s modulated transmission over 2 km with a low power penalty of 0.25 dB at 25degC .