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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container_end_page 3601
container_issue 20
container_start_page 3595
container_title Journal of lightwave technology
container_volume 32
creator Yu, Liqiang
Lu, Dan
Pan, Biwei
Zhao, Lingjuan
Wu, Jiagui
Xia, Guangqiong
Wu, Zhengmao
Wang, Wei
description 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.
doi_str_mv 10.1109/JLT.2014.2320371
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subjects Chaos
IP networks
Laser feedback
Optical amplifiers
Optical feedback
Oscillators
Radio frequency
title Monolithically Integrated Amplified Feedback Lasers for High-Quality Microwave and Broadband Chaos Generation
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