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Sub-100 attosecond timing jitter from low-noise passively mode-locked solid-state laser at telecom wavelength

机译:低噪声无源锁模固态激光器在电信波长下的亚100亚秒定时抖动

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摘要

We report on the ultralow timing jitter of the 100 MHz pulse trains generated by two identical passively mode-locked diode-pumped solid-state lasers (DPSSLs) emitting at 1556 nm. Ultralow timing jitter of 83 as (integrated from 10 kHz to 50 MHz) for one laser has been measured with a balanced optical cross-correlator as timing discriminator. Extremely low intensity noise has been measured as well. Several measurement techniques have been used and show similar jitter results. Different possible noise sources have been theoretically investigated and compared to the measured jitter power spectral density. It is found that although the measured integrated jitter is quite low, it is still significantly above the quantum limit in the considered frequency span. Therefore, there is a substantial potential for technical improvements that could make passively mode-locked DPSSL outperform fiber lasers as source of microwaves with low phase noise.
机译:我们报告了由两个相同的无源锁模二极管泵浦固态激光器(DPSSLs)在1556 nm处发射产生的100 MHz脉冲序列的超低时序抖动。用平衡的光学互相关器作为定时鉴别器,已测量出一台激光器的超低定时抖动为83 as(从10 kHz到50 MHz积分)。还测量了极低强度的噪声。已经使用了几种测量技术,它们显示出相似的抖动结果。理论上已经研究了各种可能的噪声源,并将它们与测得的抖动功率频谱密度进行了比较。可以发现,尽管测得的积分抖动非常低,但在所考虑的频率跨度中,它仍远高于量子极限。因此,存在很大的技术改进潜力,可以使被动锁模的DPSSL优于作为低相位噪声微波源的光纤激光器。

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