低偏振、宽光谱半导体光放大器

Nanomaterials Pub Date : 2024-06-02 DOI:10.3390/nano14110969
Meng Zhang, Tianyi Zhang, Hui Tang, L. Liang, Yongyi Chen, Li Qin, Yue Song, Yuxin Lei, P. Jia, Yubing Wang, Cheng Qiu, Yuntao Cao, Yongqiang Ning, Lijun Wang
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引用次数: 0

摘要

全光网络中对偏振不敏感的半导体光放大器(SOA)可以提高信号光质量和传输速率。为了降低增益对偏振的敏感性,本文设计、模拟并开发了一种 1550 nm 波段的多量子阱 SOA。有源区主要由四元化合物 InGaAlAs 组成,因为各元件的势垒和阱的差异会导致晶格失配。因此,产生了应变量子阱,使 SOA 对光的偏振态具有增益不敏感性。在模拟中,研究了脊宽分别为 4 微米、5 微米和 6 微米的 SOA。4 微米脊宽可实现大于 140 纳米的 3 分贝增益带宽,而 6 微米脊宽则可提供更大的输出功率和增益。输入功率为 0 dBm 时,饱和输出功率为 150 mW(增益 21.76 dB),而输入功率为 10 dBm 时,饱和输出功率增至 233 mW(增益 13.67 dB)。在 -20 dBm 时,极化灵敏度<3 dBm。这一设计实现了低偏振灵敏度、宽增益带宽和高增益,在进一步优化后将适用于广泛的领域。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Low-Polarization, Broad-Spectrum Semiconductor Optical Amplifiers
Polarization-insensitive semiconductor optical amplifiers (SOAs) in all-optical networks can improve the signal-light quality and transmission rate. Herein, to reduce the gain sensitivity to polarization, a multi-quantum-well SOA in the 1550 nm band is designed, simulated, and developed. The active region mainly comprises the quaternary compound InGaAlAs, as differences in the potential barriers and wells of the components cause lattice mismatch. Consequently, a strained quantum well is generated, providing the SOA with gain insensitivity to the polarization state of light. In simulations, the SOA with ridge widths of 4 µm, 5 µm, and 6 µm is investigated. A 3 dB gain bandwidth of >140 nm is achieved with a 4 µm ridge width, whereas a 6 µm ridge width provides more output power and gain. The saturated output power is 150 mW (21.76 dB gain) at an input power of 0 dBm but increases to 233 mW (13.67 dB gain) at an input power of 10 dBm. The polarization sensitivity is <3 dBm at −20 dBm. This design, which achieves low polarization sensitivity, a wide gain bandwidth, and high gain, will be applicable in a wide range of fields following further optimization.
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