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Automatic classification of the frequency chirp in directly modulated lasers using cross-correlation

机译:使用互相关对直接调制激光器中的频率线性调频进行自动分类

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An automatic method to discriminate between adiabatic and transient-chirp dominated directly modulated semiconductor lasers (DML), useful to classify telecommunications transmitters, is presented. It is based on calculating the cross-correlation between the optical power and chirp waveforms of the device under test and the use of a decision threshold. The accuracy of the algorithm is demonstrated using simulated signals obtained from a well-tested laser model complemented with experimentally-derived parameters for several real lasers. By modifying the confinement factor, the laser chirp behavior can gradually be transformed from transient to adiabatic, thus enabling the validation of the proposed algorithm. Correct classification results are reported. Due to its flexibility, ease of implementation, simplicity and accuracy, the classification algorithm here put forward, represents a practical tool for testing and fabrication of DMLs.
机译:提出了一种区分绝热和瞬变a为主的直接调制半导体激光器(DML)的自动方法,可用于对电信发射机进行分类。它基于计算被测设备的光功率和线性调频波形之间的互相关性以及使用决策阈值。使用从经过良好测试的激光模型获得的模拟信号,再加上针对多个实际激光器的实验得出的参数,可以证明算法的准确性。通过修改限制因子,可以将激光chi的行为逐渐从瞬变转变为绝热,从而验证所提出算法的有效性。报告正确的分类结果。由于其灵活性,易实现性,简单性和准确性,这里提出的分类算法代表了测试和制造DML的实用工具。

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