Wang Bin, Fan Xinyu, Wang Shuai, Du Jiangbing, He Zuyuan
Opt Express. 2017 Feb 20;25(4):3514-3524. doi: 10.1364/OE.25.003514.
In this paper, we propose and demonstrate a millimeter-resolution long-range optical frequency domain reflectometry (OFDR) using an ultra-linearly 100-GHz swept optical source realized by injection-locking technique and cascaded four-wave-mixing (FWM) process. The ultra-linear sweep is realized using an external modulation method with a linearly swept radio frequency (RF) signal. The RF signal sweeps from 16 GHz to 19.3 GHz, and the slave laser is injection-locked to the 8th-order sideband of the master laser, achieving a frequency sweeping span of ~25 GHz. By using the injection-locked frequency-swept laser as the optical source of OFDR, we obtain a spatial resolution of 4.2 mm over 10-km measurement range. A polarization beat length of 10.5 cm is measured benefiting from the high spatial resolution. To improve the spatial resolution further, FWM process is used to broaden the frequency sweeping span. Frequency sweeping span of ~100 GHz is achieved with cascaded FWM. We demonstrate a 1.1-mm spatial resolution over 2-km measurement range with the proposed ultra-linearly swept optical source.
在本文中,我们提出并演示了一种毫米级分辨率的远程光学频域反射仪(OFDR),它使用通过注入锁定技术和级联四波混频(FWM)过程实现的超线性100GHz扫频光源。超线性扫描通过具有线性扫描射频(RF)信号的外部调制方法实现。RF信号从16GHz扫描到19.3GHz,从激光器被注入锁定到主激光器的八阶边带,实现了约25GHz的频率扫描范围。通过使用注入锁定的扫频激光器作为OFDR的光源,我们在10公里的测量范围内获得了4.2毫米的空间分辨率。受益于高空间分辨率,测量到的偏振拍长为10.5厘米。为了进一步提高空间分辨率,采用FWM过程来拓宽频率扫描范围。通过级联FWM实现了约100GHz的频率扫描范围。我们用所提出的超线性扫频光源在2公里的测量范围内演示了1.1毫米的空间分辨率。