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Complete characterization of ultrashort pulse sources at 1550 nm

机译:完整表征1550 nm的超短脉冲源

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This paper reviews the use of frequency-resolved optical gating (FROG) to characterize mode-locked lasers producing ultrashort pulses suitable for high-capacity optical communications systems at wavelengths around 1550 nm, Second harmonic generation (SHG) FROG is used to characterize pulses from a passively mode-locked erbium-doped fiber laser, and both single-mode and dual-mode gain-switched semiconductor lasers. The compression of gain-switched pulses in dispersion compensating fiber is also studied using SHG-FROG, allowing optimal compression conditions to be determined without a priori assumptions about pulse characteristics. We also describe a fiber-based FROG geometry exploiting cross-phase modulation and show that it is ideally suited to pulse characterization at optical communications wavelengths. This technique has been used to characterize picosecond pulses with energy as low as 24 pJ, giving results in excellent agreement with SHG-FROG characterization, and without any temporal ambiguity in the retrieved pulse.
机译:本文回顾了使用频率分辨光闸(FROG)来表征锁模激光器,该锁模激光器产生的超短脉冲适用于1550 nm左右波长的高容量光通信系统。二次谐波(SHG)FROG用于表征来自无源锁模掺光纤激光器,以及单模和双模增益开关半导体激光器。还使用SHG-FROG研究了色散补偿光纤中增益切换脉冲的压缩,从而无需事先假设脉冲特性即可确定最佳压缩条件。我们还描述了利用交叉相位调制的基于光纤的FROG几何结构,并表明它非常适合在光通信波长下进行脉冲表征。该技术已被用来表征能量低至24 pJ的皮秒脉冲,与SHG-FROG表征具有极佳的一致性,并且在检索到的脉冲中没有任何时间歧义。

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