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Two-Wavelength Switching With a 1310-nm Quantum Dot Distributed Feedback Laser

机译:用1310 nm量子点分布式反馈激光器进行两波长切换

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Two-wavelength switching operation and bistability is reported for the first time with a 1310-nm quantum-dot (QD) distributed feedback (DFB) laser. We demonstrate experimentally the switching of the lasing mode of the QD laser under external optical injection into one of the residual Fabry–Perot (FP) modes of the device. Clockwise switching and bistability occurs for both the lasing and the injected subsidiary modes of the QD DFB laser as the injection strength is increased. Moreover, very high ON–OFF contrast ratio is measured for the switching transition of the lasing mode of the device. We have also analyzed experimentally the influence of two important system parameters, namely the initial wavelength detuning and the applied bias current. The variety of switching behaviors obtained with a 1310-nm QD DFB laser 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:首次报道了1310 nm量子点(QD)分布式反馈(DFB)激光器的两波长切换操作和双稳态。我们通过实验证明了在外部光注入下将QD激光器的激光模式切换为设备的残余Fabry-Perot(FP)模式之一。随着注入强度的增加,QD DFB激光器的激光模式和注入的辅助模式都会发生顺时针切换和双稳态。此外,对于设备的激光模式的转换过渡,可以测量非常高的ON-OFF对比度。我们还通过实验分析了两个重要系统参数的影响,即初始波长失谐和施加的偏置电流。用1310-nm QD DFB激光器加上纳米结构激光器的理论上优越的性能获得的各种开关行为,为这些器件在当前和将来的光学中的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。电信网络。

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