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Effect of multi-input injection locking on hysteresis width and switching time in SMFP-LDs for short pulse switch

机译:对于短脉冲开关,SMFP-LD中多输入注入锁定对迟滞宽度和开关时间的影响

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In this paper, we have analyzed the effect of multi-input injection on the hysteresis width and rising-falling time of output signal at the dominant mode and the suppressed-injected mode of the single mode Fabry-perot laser diode (SMFP-LD). The dominant mode of SMFP-LD can be changed with the change in operating temperature and has a tunability of about 10 nm. The analysis of hysteresis width is useful for choosing the appropriate input power and wavelength detuning for input injected beam according to its applications. Latching application needs larger hysteresis width whereas for switching application lesser hysteresis width is preferred for less switching time. The hysteresis analysis is used to demonstrate short pulse controlled all-optical switch which includes SR latch as a control unit and 1×2 switch as a switching unit. Input control pulses are used to switch input data of 10 Gbps to output ports and the minimum control pulse observed is 280 ps. Clear waveforms, eye diagram and rising/falling time at outputs are obtained for the proposed optical short pulse controlled switching circuit.
机译:在本文中,我们分析了多输入注入对单模法布里-珀罗激光二极管(SMFP-LD)的主导模式和抑制注入模式下输出信号的磁滞宽度和上升下降时间的影响。 。 SMFP-LD的主导模式可以随工作温度的变化而改变,并且具有约10 nm的可调性。磁滞宽度的分析对于根据其应用为输入注入光束选择合适的输入功率和波长失谐非常有用。闩锁应用需要较大的磁滞宽度,而对于开关应用,则需要较小的磁滞宽度以缩短开关时间。磁滞分析用于演示短脉冲控制的全光开关,该开关包括SR锁存器作为控制单元和1×2开关作为开关单元。输入控制脉冲用于将10 Gbps的输入数据切换到输出端口,观察到的最小控制脉冲为280 ps。对于所提出的光学短脉冲控制开关电路,可获得清晰的波形,眼图和输出的上升/下降时间。

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