Highly coherent linearly-swept fiber laser based on composite optical phase-locked loop

Yinxia Meng, Weilin Xie, Yuxiang Feng, Wei Wei, Yi Dong
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Abstract

We present a dual-loop composite optical phase-locked loop (OPLL) composed of an acousto-optic frequency shifter based external modulation loop and a piezo based direct modulation loop for the generation of highly coherent swept-frequency fiber laser. It allows offering a larger loop bandwidth and gain, permitting an efficient linearization and coherence enhancement. We have verified experimentally a highly coherent swept-frequency fiber laser with a high fidelity and linearized frequency sweep with sweep range of ~8.2 GHz at ~164 GHz/s sweep rate, accompanied with a peak-to-peak frequency error as low as ~130 kHz. The in-band noise of the coherent beat note has been effective suppressed by almost 60 dB within a loop bandwidth up to ~80 kHz . The proposed linearly swept-frequency fiber laser provides a straightforward optimization of the real-time sweep control and far distance ranging in various scenarios, which is supposed to be a beneficial tool in both industrial and commercial applications.
基于复合光锁相环的高相干线扫光纤激光器
我们提出了一种双环复合光锁相环(OPLL),该双环由基于声光移频器的外调制环和基于压电的直接调制环组成,用于产生高相干扫描频率光纤激光器。它允许提供更大的环路带宽和增益,允许有效的线性化和相干增强。实验验证了一种高相干扫描频率光纤激光器,具有高保真度和线性化的扫描频率,扫描范围为~8.2 GHz,扫描速率为~164 GHz/s,峰值频率误差低至~130 kHz。在高达~ 80khz的环路带宽内,相干拍音的带内噪声被有效抑制了近60db。所提出的线性扫描频率光纤激光器提供了在各种场景下实时扫描控制和远距离测距的直接优化,有望成为工业和商业应用的有益工具。
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