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Numerical Study of a DFB Semiconductor Laser and Laser Array With Chirped Structure Based on the Equivalent Chirp Technology

机译:基于等效Chi技术的DFB半导体激光器和With结构激光器阵列的数值研究

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摘要

We propose that a Bragg grating with a chirp profile in a semiconductor distributed feedback (DFB) laser can be designed and fabricated through nonuniform sampling of a uniform grating based on the equivalent chirp technology (ECT). The characteristics, including the relationship between the input current and output power, the light distribution within the laser cavity, the lasing spectrum, and the linewidth, are numerically analyzed and compared with a DFB laser with a true chirped grating. The study shows that the proposed DFB laser with an equivalent chirp provides an identical performance to that of a conventional DFB laser. Based on the ECT, different chirp gratings in a DFB laser array can also be fabricated by simply using different sampling functions, with the grating period in all gratings kept constant. The key advantage of the proposed technique is that a DFB laser or laser array can be fabricated based on the conventional holography technology, which would simplify the fabrication.
机译:我们建议可以通过基于等效线性调频技术(ECT)的均匀光栅的非均匀采样来设计和制造半导体分布反馈(DFB)激光器中具有线性调频轮廓的布拉格光栅。对这些特性进行了数值分析,包括输入电流和输出功率之间的关系,激光腔内的光分布,激光光谱和线宽,并将其与带有真正chi光栅的DFB激光器进行了比较。研究表明,提出的具有等效chi声的DFB激光器可提供与常规DFB激光器相同的性能。基于ECT,还可以通过简单地使用不同的采样函数来制造DFB激光器阵列中的不同线性调频光栅,并使所有光栅中的光栅周期保持恒定。所提出的技术的主要优点在于,可以基于传统的全息技术来制造DFB激光器或激光器阵列,这将简化制造过程。

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