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On the prediction of the mode-partitioning floor in injection lasers with multiple side modes at 2 and 10 Gb/s

机译:关于具有2和10 Gb / s的多边模的注入激光器中的模式划分基底的预测

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An analytical method is presented for estimating the error-rate floor to be expected in a digital transmission system using an injection laser. A computer model of the laser, including Langevin noise sources and with random sequences of signal pulses, is used to find the probability of the main-mode average power during an ON pulse being less than 0.5 times normal average power during an ON pulse event. With sufficient fiber dispersion, this constitutes a useful estimate of the mode-partitioning floor. Three methods are included for determining the floor: (1) direct calculation using a single Monte Carlo run; (2) extrapolation to floors in the 10/sup -10/ region of a series of Monte Carlo runs for different laser modal loss differences ( Delta alpha ); and (3) extrapolation of a single Monte Carlo run to low error-rate floors using a new analytical expression with parameters derived from the Monte Carlo run. In order to avoid a serious error-rate floor at 2 or 10 Gb/s, it is found that Delta alpha must be about 10 or 30-35 cm/sup -1/, respectively.
机译:提出了一种分析方法,用于估计在使用注入激光器的数字传输系统中预期的错误率下限。使用激光计算机模型(包括兰格文噪声源和随机的信号脉冲序列)来查找ON脉冲事件期间主模式平均功率小于ON脉冲事件期间正常平均功率的0.5倍的概率。在足够的光纤色散的情况下,这构成了对模式划分底限的有用估计。包括三种确定底限的方法:(1)使用单个Monte Carlo运行直接计算; (2)针对不同的激光模态损耗差异(Delta alpha)外推到一系列蒙特卡洛运行的10 / sup -10 /区域中的地板; (3)使用带有从蒙特卡洛试验得出的参数的新分析表达式,将单个蒙特卡洛试验外推到低错误率底限。为了避免出现2或10 Gb / s的严重误码率下限,发现Delta alpha必须分别约为10或30-35 cm / sup -1 /。

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