标题: | 以内腔半导体光放大器进行锁模掺铒光纤雷射的相位杂讯和超模杂讯抑制 Suppression of Phase Noise and Supermode Noise in Mode-Locked Erbium Doped Fiber Laser with an Intra-Cavity Semiconductor Optical Amplifier |
作者: | 吴铭忠 Ming-Chung Wu 林恭如 Gong-Ru Lin 光电工程学系 |
关键字: | 增益半导体雷射;掺铒光纤放大器;光脉冲注入;半导体光放大器;单边带相位杂讯;时序抖动量;超模杂讯;Gain-Switch Semiconductor Laser;Erbium-Doped Fiber Amplifier;Optical Injection Locking;Semiconductor Optical Amplifier;Single-Side-Band Phase Noise;Timing Jitter;Supermode Noise |
公开日期: | 2004 |
摘要: | 在本论文中,我们说明利用内腔半导体光放大器和光带通滤波器加入谐波锁模掺铒光纤雷射研究极低超模杂讯和单边带相位杂讯的特性且与增益开关费比布洛雷射二极体和掺铒光纤雷射的互注锁定做比较。利用驱动在无增益情况下的内腔半导体光放大器作为高通滤波器时,我们首先探讨谐波锁模掺铒光纤雷射的超模杂讯抑制比可同时与费比布洛雷射二极体掺铒光纤雷射互注锁定的超模杂讯抑制比做相比,并且不牺牲单边带相位杂讯和时序抖动量。 当半导体光放大器被超作接近透明增益情况下,掺铒光纤雷射的超模杂讯抑制比增加到86dB,但是牺牲了相位杂讯(-104.2dBc/Hz),劣化时序抖动量(1.4 ps)且导致脉冲拓宽了(61 ps)。但藉由加入光带通滤波器于环腔中时,则以半导体光放大器作为滤波器的掺铒光纤雷射之超模杂讯抑制比、单边带相位杂讯、时序抖动量和脉冲宽度均可以进一步的被改善为90 dB,-112 dBc/Hz,0.7 ps and 42 ps。有半导体光放大器和光带通滤波器的谐波锁模掺铒光纤雷射的超模杂讯抑制比特性已经与费比布洛雷射二极体掺铒光纤雷射互注锁定的超模杂讯抑制比做相比较。最后,我们结合锁相回路和压电转换控制器达成回授锁模掺铒光纤雷射技术。在这实验,相位杂讯和时序抖动被进一步做分析。 In this thesis, we demonstrate that the ultralow supermode noise and single-sided-band (SSB) phase noise characteristics of a harmonically mode-locked (HML) Erbium-doped fiber laser (EDFL) with an intra-cavity semiconductor optical amplifier (SOA) and optical band-pass filter (OBPF) are investigated, and are compared to a mutually injection-mode-locking (IML) link of gain-switched Fabry-Perot laser Diode (FPLD) and EDFL with the state-of-the-art performances. With an intra-cavity SOA based high-pass filter driven at unitary gain condition, we primarily demonstrate that the supermode noise suppression ratio (SMNSR) of the HML-EDFL can be simultaneously suppressed to be comparable with that of the FPLD-IML-EDFL without sacrificing the SSB phase noise and jitter performances. The SOA operated at nearly transparent condition enhances the SMNSR of the EDFL to 86 dB at the cost of degrading phase noise (-104.2 dBc/Hz), increasing jitter (1.4 ps), and broadened pulsewidth (61 ps). By adding an OBPF into the ring cavity, the SMNSR, SSB phase noise, jitter and pulsewidth of the SOA filtered HML-EDFL can further be improved to 90 dB, -112 dBc/Hz, 0.7 ps and 42 ps, respectively. The SMNSR performance of the HML-EDFL with SOA and OBPF has already been comparable with that of a FPLD-IML-EDFL link. At last, we use phase lock loop (PLL) and piezo-electric transducer (PZT) controller link to achieve regenerative mode-locked EDFL technique. The SSB phase noise and timing jitter are further analyzed in this experiment. |
URI: | http://140.113.39.130/cdrfb3/record/nctu/#GT009224564 http://hdl.handle.net/11536/76759 |
显示于类别: | Thesis |
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