Performance Investigations of InAs/InP Quantum-Dash Semiconductor Optical Amplifiers with Different Numbers of Dash Layers

被引:0
|
作者
Mao, Youxin [1 ]
Xie, Xiaoran [1 ]
Song, Chunying [1 ]
Lu, Zhenguo [1 ]
Poole, Philip J. [1 ]
Liu, Jiaren [1 ]
Toreja, Mia [1 ]
Qi, Yang [1 ]
Liu, Guocheng [1 ]
Barrios, Pedro [1 ]
Poitras, Daniel [1 ]
Weber, John [1 ]
Zhao, Ping [1 ]
Vachon, Martin [1 ]
Rahim, Mohamed [1 ]
Ma, Penghui [1 ]
Chen, Silas [1 ]
Atieh, Ahmad [2 ]
机构
[1] CNR, Adv Elect & Photon Res Ctr, Ottawa, ON K1A 0R6, Canada
[2] Optiwave Syst Inc, 7 Capella Court,Suite 300, Ottawa, ON K1N 6N5, Canada
关键词
semiconductor optical amplifier; InAs/InP quantum dot/dash; chip gain; 3 dB saturated output power; noise figure; DOT;
D O I
10.3390/mi14122230
中图分类号
O65 [分析化学];
学科分类号
070302 ; 081704 ;
摘要
We present here a performance comparison of quantum-dash (Qdash) semiconductor amplifiers (SOAs) with three, five, eight, and twelve InAs dash layers grown on InP substrates. Other than the number of Qdash layers, the structures were identical. The eight-layer Qdash SOA gave the highest amplified spontaneous emission power (4.3 dBm) and chip gain (26.4 dB) at 1550 nm, with a 300 mA CW bias current and at 25 degrees C temperature, while SOAs with fewer Qdash layers (for example, three-layer Qdash SOA), had a wider ASE bandwidth (90 nm) and larger 3 dB gain saturated output power (18.2 dBm) in a shorter wavelength range. The noise figure (NF) of the SOAs increased nearly linearly with the number of Qdash layers. The longest gain peak wavelength of 1570 nm was observed for the 12-layer Qdash SOA. The most balanced performance was obtained with a five-layer Qdash SOA, with a 25.4 dB small-signal chip gain, 15.2 dBm 3 dB output saturated power, and 5.7 dB NF at 1532 nm, 300 mA and 25 degrees C. These results are better than those of quantum well SOAs reported in a recent review paper. The high performance of InAs/InP Qdash SOAs with different Qdash layers shown in this paper could be important for many applications with distinct requirements under uncooled scenarios.
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页数:10
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