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A tunable and stabilized single-frequency fiber ring laser based on hybrid amplifier and shorter length EDF with unpumped status

机译:基于混合动力放大器的可调谐和稳定的单频光纤环激光,并且具有较短的EDF,具有未捕获状态

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摘要

A novel fiber ring laser technique, which covers both C- and L-bands, with the function of wavelength tunability and single-longitudinal-mode oscillation, is proposed and demonstrated experimentally. We propose a two-stage hybrid amplifier, which consists of a semiconductor optical amplifier (SOA) and an erbium-doped fiber amplifier (EDFA) with cascade configuration, for the gain profile to achieve C- to L-band (1540 to 1610 nm). A saturated-absorber-based autotracking filter, which composes of an unpumped erbium-doped fiber (EDF) and an optical reflected mirror (ORM), is employed to provide fine mode restriction and guarantee the single-frequency operation. The unpumped EDF must use shorter length to retrieve the stabilized single-frequency operation while the EDF length is between 0.5 to 1 m long. The effectively operation range is from 1542 to 1618 nm. The maximal output power of 5.7 dBm is retrieved at near 1577 nm, and the output power will drop to 3.7 and -0.32 dBm at 1604 and 1616 nm, respectively. The SMSR can be up to 53.2 dB/ 0.05 nm at around 1577 nm. The performance of output power of > 2.1 dBm, power stability of ≤ 0.02 dB, wavelength variation of ≤ 0.01 nm and side-mode suppression ratio (SMSR) of > 31 dB / 0.05 nm has been demonstrated for this single-frequency fiber laser over the wavelength range of 1550 to 1608 nm. The linewidth (RF) spectrum of the proposed structure has also been studied.
机译:一种新型纤维环激光技术,涵盖C-和L频带,具有波长可调性和单纵模振荡的功能,并实验证明。我们提出了一种两级混合放大器,其由半导体光学放大器(SOA)和具有级联配置的erbium掺杂的光纤放大器(EDFA)组成,用于增益配置,以实现C-TO-L波段(1540至1610nm )。基于饱和吸收剂的自动背包过滤器,其组成未捕获的铒掺杂光纤(EDF)和光学反射镜(ORM),以提供精细模式限制并保证单频操作。未捕获的EDF必须使用较短的长度来检索稳定的单频操作,而EDF长度长0.5至1米。有效的操作范围为1542至1618nm。在接近1577 nm的最大输出功率为5.7 dBm,输出功率分别在1604和1616nm处掉到3.7和-0.32 dBm。 SMSR最高可达53.2dB / 0.05nm,约为1577 nm。对于该单频光纤激光器,已经对该单频光纤激光器进行了≤0.02dB,功率稳定性,≤0.02dB,≤0.01nm和侧面抑制比(SMSR)的波长变化,≤0.01dBm,波长变化,≤0.01nm和侧面抑制比(SMSR)的动力稳定性。波长范围为1550至1608nm。还研究了所提出的结构的线宽(RF)谱。

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