论文标题
在2μm处的全纤维频率梳可提供1.4周期脉冲
All-fiber frequency comb at 2 μm providing 1.4-cycle pulses
论文作者
论文摘要
我们报告了一种全极化维护的光纤方法,用于在2μM下生成亚2循环脉冲,并提供相应的八八度光学频率梳子。我们的配置利用成熟的ER:纤维激光技术以1.5μm的形式为掺杂硫纤维的纤维放大器提供种子脉冲,以100 MHz的重复速率输出330 MW的平均功率。放大后,纤维中的非线性自我压缩将脉冲持续时间降低到9.5 fs或1.4光周期。大约32%的能量位于脉冲峰内,极化灭绝比大于15 dB。超短脉冲的光谱从1μm跨越到2.4μm以上,并仅使用12 MW或〜3.5%的总功率来直接测量载波 - 内玻璃偏移频率。我们的方法仅采用商业上可用的纤维组件,从而产生了紧凑的交钥匙放大器设计,并且在较大的社区中易于复制。此外,总体设计和自我压缩机制在重复率和功率上都是可扩展的。因此,该系统应作为近红外的稳健频率梳子来源,或作为生成中红外频率梳子的泵源。
We report an all-polarization-maintaining fiber optic approach to generating sub-2 cycle pulses at 2 μm and a corresponding octave-spanning optical frequency comb. Our configuration leverages mature Er:fiber laser technology at 1.5 μm to provide a seed pulse for a thulium-doped fiber amplifier that outputs 330 mW average power at 100 MHz repetition rate. Following amplification, nonlinear self-compression in fiber decreases the pulse duration to 9.5 fs, or 1.4 optical cycles. Approximately 32 % of the energy sits within the pulse peak, and the polarization extinction ratio is more than 15 dB. The spectrum of the ultrashort pulse spans from 1 μm to beyond 2.4 μm and enables direct measurement of the carrier-envelope offset frequency using only 12 mW, or ~3.5 % of the total power. Our approach employs only commercially-available fiber components, resulting in a turnkey amplifier design that is compact, and easy to reproduce in the larger community. Moreover, the overall design and self-compression mechanism are scalable in repetition rate and power. As such, this system should be useful as a robust frequency comb source in the near-infrared or as a pump source to generate mid-infrared frequency combs.