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Two-wavelength switching with a 1310nm-QDot DFB Laser

机译:用1310nm-QDot DFB激光器进行两波长切换

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摘要

We report a first experimental observation of two-wavelength switching (2WS) and bistability with a 131 Onm-Quantum Dot (QDot) Distributed Feedback (DFB) laser subject to external optical injection and operated in reflection. We experimentally demonstrate the switching of the emission wavelength of the QDot laser when an external optical signal is injected into one of the subsidiary' longitudinally modes located in the longer wavelength side of the device's lasing mode. Clockwise nonlinear switching and bistability are attained in all cases for both the emitting and the injected mode of the QDot laser as the injection strength is increased. Moreover, very high on-off contrast ratio is measured in the switching (and bistability) transition of the emission mode of the device. We have also analysed the switching properties of the 1310-QDot DFB laser as a function of the applied bias current and the initial wavelength detuning between the wavelengths of the external signal and that of the device's injected mode. In general, wider bistable loops, higher on-off contrast ratio between output states and higher input power requirements for switching are observed as the applied bias and initial detuning are increased. This diversity of switching behaviors obtained with a 1310 QDot DFB laser under external optical injection, added to the theoretically superior properties of nanostructure lasers, offers exciting prospects for novel uses of these devices in all-optical logic and all-optical switching/routing applications in present and future optical telecommunication networks.
机译:我们报告了一个131 Onm-量子点(QDot)分布式反馈(DFB)激光器经过外部光学注入并进行反射操作后的两波长切换(2WS)和双稳态的第一实验观察。我们通过实验证明了在将外部光信号注入位于设备激光模式的较长波长侧的辅助设备的纵向模式之一时,QDot激光器发射波长的切换。随着注入强度的增加,在所有情况下,QDot激光器的发射和注入模式均实现了顺时针的非线性切换和双稳态。此外,在设备的发射模式的切换(和双稳态)过渡中测量到非常高的开关对比度。我们还分析了1310-QDot DFB激光器的开关特性,该特性取决于所施加的偏置电流以及初始波长在外部信号波长与设备注入模式波长之间的失谐。通常,随着施加偏置和初始失谐的增加,观察到更宽的双稳态环路,输出状态之间更高的开关对比度和更高的开关输入功率要求。用1310 QDot DFB激光器在外部光注入下获得的这种开关行为多样性,再加上纳米结构激光器的理论上优越的性能,为这些器件在全光逻辑和全光开关/路由应用中的新颖应用提供了令人兴奋的前景。当前和将来的光通信网络。

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  • 来源
  • 会议地点 San Francisco CA(US)
  • 作者单位

    Center for High Technology Materials, University of New Mexico, 1313 Goddard SE, 87106,Albuquerque, NM, USA,School of Computer Science and Electronic Engineering, University of Essex, Wivenhoe Park, CO4 3SQ, Colchester, UK.;

    Center for High Technology Materials, University of New Mexico, 1313 Goddard SE, 87106,Albuquerque, NM, USA;

    School of Computer Science and Electronic Engineering, University of Essex, Wivenhoe Park, CO4 3SQ, Colchester, UK.;

    School of Computer Science and Electronic Engineering, University of Essex, Wivenhoe Park, CO4 3SQ, Colchester, UK.;

    Center for High Technology Materials, University of New Mexico, 1313 Goddard SE, 87106,Albuquerque, NM, USA;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Quantum Dot Lasers; Optical Injection; Two Wavelength Switching; Bistability;

    机译:量子点激光器;光学注射两种波长切换;双稳态;

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