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High Performance InP-Based Quantum Dash Semiconductor Mode-Locked Lasers for Optical Communications

机译:用于光通信的基于InP的高性能量子破折号半导体锁模激光器

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摘要

Several applications are pushing the development of high performance mode-locked lasers: generation of short pulses for extremely high bit rate transmission at 100 Gbls and beyond, all-optical clock recovery at 40 Gb/s and beyond, generation of millimeter wave signals through mode-beating on a high speed photodiode, optical sampling for analog-to-digital conversion, and generation of wavelength-division-multiplexing channels. This paper will report on new advances in InP-based quantum dash mode-locked lasers, which largely surpass the performance of their bulk or quantum well counterparts in terms of the mode-beating spectral purity and the bandwidth of optical spectrum. In particular, we will describe the quantum dash nanostructures used for the mode-locked lasers and the dependence of the mode-locking properties on detailed quantum dash structures. We will demonstrate that these quantum dash lasers can be actively mode-locked, generating sub-picosecond or picosecond pulses at different repetition frequencies with extremely low timing jitter. They can also be used to achieve all-optical clock recovery, with timing jitter compliant with International Telecommunication Union (ITU) standards even for highly degraded input optical signal-to-noise ratio. Finally, we demonstrate that, owing to the very wide and flat optical spectrum and the low relative-intensity noise level of the mode-locked laser, error-free transmission over 50 km single mode fiber has been achieved for eight wavelength division multiplexing ITU channels at 10 Gbls with a channel spacing of 100 GHz.
机译:几种应用推动着高性能锁模激光器的发展:产生短脉冲以实现100 Gbls及更高速率下的极高比特率传输,40 Gb / s及更高速率下的全光时钟恢复,通过模式产生毫米波信号-在高速光电二极管上拍频,进行模数转换的光学采样,以及产生波分复用通道。本文将报告基于InP的量子破位锁模激光器的新进展,这些激光器在模式拍频光谱纯度和光谱带宽方面将大大超过其体或量子阱同类产品的性能。特别地,我们将描述用于锁模激光器的量子破折纳米结构以及锁模特性对详细的量子破折结构的依赖性。我们将证明这些量子破折号激光器可以主动锁模,以不同的重复频率产生亚皮秒或皮秒脉冲,并且具有极低的定时抖动。它们还可以用于实现全光时钟恢复,即使对于高度降级的输入光信噪比,其时序抖动也符合国际电信联盟(ITU)标准。最后,我们证明,由于锁模激光器的光谱非常宽且平坦,并且相对强度噪声水平较低,因此,八个波分复用ITU信道已实现了50 km单模光纤的无差错传输频率为10 Gbls,信道间隔为100 GHz。

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  • 来源
    《Bell Labs technical journal》 |2009年第3期|63-84|共22页
  • 作者单位

    Alcatel Thales Ill-V Lab in Palaiseau, France;

    Alcatel Thales Ill-V Lab, a joint laboratory of Alcatel-Lucent Bell Labs and Thales Research & Technology, in Orsay, France;

    Alcatel Thales Ill-V Lab, a joint laboratory of Alcatel-Lucent Bell Labs and Thales Research & Technology in Marcoussis, France;

    Alcatel Thales Ill-V Lab, a joint laboratory of Alcatel-Lucent Bell Labs and Thales Research & Technology, in Marcoussis, France;

    Alcatel Thales Ill-V Lab, a joint laboratory of Alcatel-Lucent Bell Labs and Thales Research & Technology, in Palaiseau, France;

    Alcatel Thales Ill-V Lab, a joint laboratory of Alcatel-Lucent Bell Labs and Thales Research & Technology, in Marcoussis, France;

    Alcatel Thales Ill-V Lab, a joint laboratory of Alcatel-Lucent Bell Labs and Thales Research & Technology, in Marcoussis, France;

    Alcatel Thales Ill-V Lab in Marcoussis, France;

    CNRS-Laboratory for Photonics and Nanostructures, Marcoussis, France;

    CNRS-Laboratory for Photonics and Nanostructures, Marcoussis, France;

    CNRS-Laboratory for Photonics and Nanostructures in Marcoussis, France;

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