Monolithically Integrated Amplified Feedback Lasers for High-Quality Microwave and Broadband Chaos Generation

The dynamics of monolithically integrated amplified feedback lasers (AFL) is investigated through numerical simulation and experimental verification. The period-doubling route to chaos and high-frequency microwave generation are demonstrated through simulation. Then, we design and fabricate monolith...

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Veröffentlicht in:Journal of lightwave technology 2014-10, Vol.32 (20), p.3595-3601
Hauptverfasser: Yu, Liqiang, Lu, Dan, Pan, Biwei, Zhao, Lingjuan, Wu, Jiagui, Xia, Guangqiong, Wu, Zhengmao, Wang, Wei
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Sprache:eng
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Zusammenfassung:The dynamics of monolithically integrated amplified feedback lasers (AFL) is investigated through numerical simulation and experimental verification. The period-doubling route to chaos and high-frequency microwave generation are demonstrated through simulation. Then, we design and fabricate monolithically integrated AFLs. Mappings of dynamic states and oscillation frequency in the parameter space of phase section current I P and amplifier section current I A are depicted. For relative small I A , the period doubling evolution to chaos is presented with the increase of I P . For the relative large I A , a high-frequency mode-beating (M-B) pulsation can be observed under suitable value of I P . The oscillation frequency of period-one is about 10 GHz and the frequency of M-B pulsation is over 40 GHz for the device with a total length of 780 μm.
ISSN:0733-8724
1558-2213
DOI:10.1109/JLT.2014.2320371