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Wavelength tuning in optically mode-locked semiconductor fiber ring lasers with linearly chirped fiber Bragg gratings

机译:具有线性chi光纤布拉格光栅的锁模半导体光纤环形激光器中的波长调谐

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摘要

We demonstrate wavelength tuning in single-wavelength and multiwavelength semiconductor fiber ring lasers that are mode locked with an optically injected control signal. A semiconductor optical amplifier is used to provide gain as well as to function as an optically controlled mode-locking element. Linearly chirped fiber Bragg gratings—single or superimposed—are used to define the lasing wavelengths as well as to provide wavelength tunability and allow for multiwavelength operation. We obtain pulses of tens of picoseconds in duration when we inject a sinusoidal optical control signal into the laser cavity, and we can tune the lasing wavelength(s) over the reflection bandwidth(s) of the grating(s) by simply changing the frequency of the injected control signal.
机译:我们演示了单波长和多波长半导体光纤环形激光器中的波长调谐,这些激光器通过光学注入的控制信号进行模式锁定。半导体光放大器用于提供增益并用作光控锁模元件。线性chi光纤布拉格光栅(单个或叠加)用于定义激光发射波长,并提供波长可调性,并允许多波长操作。当将正弦光学控制信号注入激光腔时,我们会获得持续时间达数十皮秒的脉冲,并且可以通过简单地改变频率来在光栅的反射带宽上调谐激光波长。注入的控制信号。

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