Broadband semiconductor optical amplifiers and tunable semiconductor lasers

SPIE ITCom Pub Date : 2003-12-10 DOI:10.1117/12.512588
Ching-Fuh Lin, Yi-shin Su, Fei-Hung Chu, Chia-Wei Tsai
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引用次数: 1

Abstract

Nonidentical multiple quantum wells (MQWs) had been widely used for broadening the emission or gain bandwidth of semiconductor optical amplifiers (SOAs). However, the carrier distribution among the MQWs is not uniform, leading to nonuniform gain contributed from different QWs. Thus using nonidentical MQWs for broadband purpose is not intuitively straightforward. Several factors need to be carefully considered. Those factors include the QW sequence, electron/hole transport time across the separate confinement hetero-structure, as well as carrier capture time. In this work, we will discuss the design of MQWs for broadband SOAs. With properly designed nonidentical MQWs, the emission bandwidth could be nearly 400 nm. Also, the tuning range of semiconductor lasers could be extended to be over 200 nm.
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宽带半导体光放大器和可调谐半导体激光器
非同态多量子阱(mqw)被广泛应用于半导体光放大器(soa)的发射带宽或增益带宽的拓宽。然而,载波在mqw之间的分布是不均匀的,导致不同qw贡献的增益不均匀。因此,为宽带目的使用不相同的mqw并不直观。有几个因素需要仔细考虑。这些因素包括量子阱序列、电子/空穴在单独约束异质结构上的输运时间以及载流子捕获时间。在本文中,我们将讨论宽带soa的mqw设计。通过合理设计非相同的mqw,发射带宽可以接近400 nm。此外,半导体激光器的调谐范围可以扩展到200nm以上。
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