London Yosef, Antman Yair, Cohen Raphael, Kimelfeld Naama, Levanon Nadav, Zadok Avi
Opt Express. 2014 Nov 3;22(22):27144-58. doi: 10.1364/OE.22.027144.
A new, hybrid time-domain and correlation-domain Brillouin analysis technique is proposed and demonstrated, providing a large number of high-resolution acquisition points. The method is based on dual-layer hierarchal encoding of both amplitude and phase. The pump and signal waves are co-modulated by a relatively short, high-rate binary phase sequence. The phase modulation introduces Brillouin interactions in a large number of discrete and localized correlation peaks along the fiber under test. In addition, the pump wave is also amplitude-modulated by a slower, carefully synthesized, long on-off-keying sequence. Brillouin interactions at the correlation peaks imprint weak replicas of the pump amplitude sequence on the intensity of the output signal wave. The Brillouin amplifications at individual correlation peaks are resolved by radar-like, matched-filter processing of the output signal, following a recently-proposed incoherent compression protocol. The method provides two significant advantages with respect to previous, pulse-gated correlation-domain analysis schemes, which involved a single pump pulse. First, compression of the extended pulse sequence enhances the measurement signal-to-noise ratio, which is equivalent to that of a large number of averages over repeating single-pulse acquisitions. The acquisition times are potentially much reduced, and the number of resolution points that may be practically interrogated increases accordingly. Second, the peak power level of the pump pulses may be lowered. Hence, the onset of phase pattern distortion due to self-phase modulation is deferred, and the measurement range can be increased. Using the proposed method, the acquisition of Brillouin gain spectra over a 2.2 km-long fiber with a spatial resolution of 2 cm is demonstrated experimentally. The entire set of 110,000 resolution points is interrogated using only 499 position scans per choice of frequency offset between pump and signal. A 5 cm-long hot-spot, located towards the output end of the pump wave, is properly recognized in the measurements.
提出并演示了一种新的时域和相关域混合布里渊分析技术,该技术可提供大量高分辨率采集点。该方法基于幅度和相位的双层分层编码。泵浦波和信号波由相对较短的高速二进制相位序列进行共调制。相位调制在被测光纤中沿大量离散且局部的相关峰引入布里渊相互作用。此外,泵浦波还由较慢的、精心合成的长开关键控序列进行幅度调制。相关峰处的布里渊相互作用在输出信号波的强度上印刻下泵浦幅度序列的微弱副本。按照最近提出的非相干压缩协议,通过对输出信号进行类似雷达的匹配滤波处理来分辨各个相关峰处的布里渊放大。与先前涉及单个泵浦脉冲的脉冲选通相关域分析方案相比,该方法具有两个显著优点。首先,扩展脉冲序列的压缩提高了测量信噪比,这相当于在重复单脉冲采集上进行大量平均的效果。采集时间可能会大幅减少,并且实际可询问的分辨率点数相应增加。其次,可以降低泵浦脉冲的峰值功率水平。因此,由于自相位调制导致的相位图案失真的起始被推迟,并且测量范围可以增加。通过实验证明了使用所提出的方法在2.2公里长的光纤上以2厘米的空间分辨率采集布里渊增益谱。对于泵浦波和信号之间的每个频率偏移选择,仅使用499次位置扫描就询问了整个110,000个分辨率点的集合。在测量中正确识别出了位于泵浦波输出端附近的一个5厘米长的热点。