Peak power and wavelength optimization of a double-fused LW-VCSEL

P. Menon, K. Kumarajah, B. Bais, H. Abdullah, B. Majlis, P. Apte
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引用次数: 3

Abstract

Long-wavelength vertical-cavity surface-emitting lasers (LW-VCSELs) have profound advantages over the traditional edge-emitting lasers offering improved properties with respect to mode selectivity, fiber coupling, threshold currents and integration into 2D arrays or with other electronic devices. Its commercialization is gaining momentum as the local and access network in optical communication system expands. This paper reports the optimization of the peak lasing power and peak lasing wavelength of a LW-VCSEL using a numerical-based simulator and Taguchi's orthogonal array methodology. Initially, peak lasing power increment of 96.5% was achieved at 9.51 mW with peak wavelength of 1.55956 µm. Next, we attempted to bring the peak wavelength on target to 1.55 µm. It was found that a reduction of DBR mirror thicknesses by 1.3% from its nominal values is able to produce a device with lasing powers of 11.62 mW and on-target peak wavelength of 1.55 µm.
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双熔接LW-VCSEL的峰值功率和波长优化
长波垂直腔面发射激光器(LW-VCSELs)与传统的边发射激光器相比具有深刻的优势,在模式选择性、光纤耦合、阈值电流和集成到二维阵列或与其他电子设备方面提供了改进的性能。随着光通信系统中局域网络和接入网的不断扩大,其商业化发展势头日益强劲。本文报道了利用数值模拟器和田口正交阵列法对LW-VCSEL的峰值激光功率和峰值激光波长进行优化。在9.51 mW的峰值波长为1.55956µm时,激光峰值功率增加了96.5%。接下来,我们尝试将目标上的峰值波长提高到1.55µm。研究发现,将DBR反射镜厚度从其标称值减少1.3%,可以产生激光功率为11.62 mW,靶峰波长为1.55µm的器件。
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