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Theoretical Performance Evaluation of Optical Complex Signals Based on Optically Injection-Locked Semiconductor Lasers
- Cho, Jun-Hyung;
- Cho, Chun-Hyung;
- Sung, Hyuk-Kee
WEB OF SCIENCE
9SCOPUS
9초록
We developed a method to generate optical complex signals based on optically injection-locked (OIL) semiconductor lasers and numerically evaluated their performance depending on the injection-locking parameters, injection ratio, and detuning frequency. We first determined the stable/unstable locking regions of the OIL system as a function of the injection-locking parameters through steady-state analysis. We then mapped the optical complex signal in both the stable injection-locking region and the complex signal plane. Based on the mapped relationship between the positions in the conventional injection-locking map and the complex signal plane, we theoretically evaluated the optical trajectories and constellation diagrams for the optical phase-shift keying signals and calculated the error-vector-magnitude with a data rate of 10 Gbaud/s using a time-domain calculation. We found that the complex signal performance could he improved using a higher injection ratio under a large negative detuning frequency.
키워드
- 제목
- Theoretical Performance Evaluation of Optical Complex Signals Based on Optically Injection-Locked Semiconductor Lasers
- 저자
- Cho, Jun-Hyung; Cho, Chun-Hyung; Sung, Hyuk-Kee
- 발행일
- 2019-11
- 유형
- Article
- 권
- 25
- 호
- 6