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Mode-locked laser pulse trains with subfemtosecond timing jitter synchronized to an optical reference oscillator

机译:亚秒级定时抖动的锁模激光脉冲序列与光学参考振荡器同步

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摘要

We independently phase lock the repetition rates of two femtosecond lasers at their ≈456,000th harmonic to a common optical oscillator. The timing jitter of each individual laser relative to the optical reference is only 0.45 fs in a 100-Hz bandwidth. Our method takes advantage of the tremendous leverage that is possible when stability is transferred from the optical to the microwave domain. The low timing jitter is commensurate with the independently measured fractional frequency instability in the repetition rates of ≤2.3×10~(-15) in 1-s averaging time, limited by the measurement system. The microwave signals at 1 GHz that are extracted by photodetection of the pulse trains have a 10-times-greater instability, confirming the presence of excess noise in the photodetection.
机译:我们独立地将两个飞秒激光器的重复频率在其≈456,000谐波处锁相到一个普通的光学振荡器。在100 Hz带宽中,每个激光器相对于光学参考的时序抖动仅为0.45 fs。当稳定性从光学领域转移到微波领域时,我们的方法利用了巨大的杠杆作用。低定时抖动与独立测量的分数频率不稳定性相对应,在1秒的平均时间内,重复频率≤2.3×10〜(-15),受测量系统的限制。通过脉冲序列的光检测提取的1 GHz微波信号的不稳定性大10倍,这证实了光检测中存在过多的噪声。

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  • 来源
    《Optics Letters》 |2003年第8期|共3页
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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 光学;
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