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All-Optical Directional Switching of Bistable Semiconductor Ring Lasers.

机译:双稳态半导体环形激光器的全光方向转换。

摘要

All-optical directional switching of bistable semiconductor ring lasers is studied by numerical simulations of a traveling-wave model. We discuss how the reversal depends on the bias current applied to the laser as well as on the energy, duration, and wavelength of the trigger pulses. For pulse durations longer than the cavity roundtrip time, the reversal occurs smoothly with a transient that exhibits relaxation oscillations, otherwise, the transient is composed of large long-lived spikes that reveal its multimode character. In the former case, the switching speed can be defined like in electronics systems, but not in the latter, which requires an operational definition of the maximum speed based on, e.g., bit-error rate measurements. Our model includes the light extraction sections present in real devices, which allows us to discuss the experimental problems posed by the differences existing between intracavity fields and output fields.
机译:通过行波模型的数值模拟研究了双稳态半导体环形激光器的全光方向转换。我们讨论了反转如何取决于施加到激光器的偏置电流以及触发脉冲的能量,持续时间和波长。对于比腔体往返时间更长的脉冲持续时间,反转会平稳地发生,并显示出弛豫振荡;否则,该瞬变由大的长寿命尖峰组成,这表明了其多模特性。在前一种情况下,可以像在电子系统中那样定义开关速度,而在后一种情况中则不能,这需要基于例如误码率测量来对最大速度进行操作性定义。我们的模型包括实际设备中存在的光提取部分,这使我们能够讨论腔内场与输出场之间存在的差异所带来的实验问题。

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