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Compact metrological frequency comb stabilized with optical injection locking assisted by long-term optoelectronic correction

机译:采用长期光电校正辅助光学注射锁定紧凑的计量频率梳子

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In this paper, we present new and encouraging results in the road towards de?mocratisation of optical frequency combs for metrology applications out of the laboratories. We study a compact InGaAs based Quantum-Dash Mode Locked Laser Diode (QD-MLLD) at 1.55μm generating high stable and low noise optical pulses with a repetition rate higher than 10 GHz [1]. The source is a 10.1 GHz mode spacing Fabry-Perot laser with extremely high internal correlation between modes. The spectral purity of the beat-note resulting in the beating of all the modes is lower than 50 kHz while the typical linewidth of optical modes is about 50 MHz. Thanks to injection locking with an External Cavity Laser Diode (ECLD) in one of the 125 modes, we succeed in a linewidth reduction by 500 of the MLLD optical modes, corresponding to the linewidth of the master laser.
机译:在本文中,我们展示了对DE的道路新的和令人鼓舞的结果,从实验室中的计量应用中的光学频率梳理。我们研究了1.55μm的基于Compact IngaAs的Quantum-Dash模式锁定激光二极管(QD-MLLD),产生高稳定和低噪声光脉冲,重复率高于10 GHz [1]。源是10.1 GHz模式间距法布里 - 珀罗激光,模式之间具有极高的内部相关性。节拍的光谱纯度导致所有模式的跳动率低于50 kHz,而光学模式的典型线宽约为50MHz。由于在125种模式之一中使用外腔激光二极管(ECLD)的注射锁定,我们在宽度降低500个MLLD光学模式下成功,对应于主激光器的线宽。

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