Dominguez-Lopez Alejandro, Angulo-Vinuesa Xabier, Lopez-Gil Alexia, Martin-Lopez Sonia, Gonzalez-Herraez Miguel
Opt Express. 2015 Apr 20;23(8):10341-52. doi: 10.1364/OE.23.010341.
According to recent models, non-local effects in dual-probe-sideband Brillouin Optical Time Domain Analysis (BOTDA) systems should be essentially negligible whenever the probe power is below the Stimulated Brillouin Scattering (SBS) threshold. This paper shows that actually there appear non-local effects in this type of systems before the SBS threshold. To explain these effects it is necessary to take into account a full spectral description of the SBS process. The pump pulse experiences a frequency-dependent spectral deformation that affects the readout process differently in the gain and loss configurations. This paper provides a simple analytical model of this phenomenon, which is validated against compelling experimental data, showing good agreement. The main conclusion of our study is that the measurements in gain configuration are more robust to this non-local effect than the loss configuration. Experimental and theoretical results show that, for a total probe wave power of ~1 mW (500 μW on each sideband), there is an up-shifting of ~1 MHz in the Brillouin Frequency Shift (BFS) retrieved from the Brillouin Loss Spectrum, whereas the BFS extracted from the measured Brillouin Gain Spectrum is up-shifted only ~0.6 MHz. These results are of particular interest for manufacturers of long-range BOTDA systems.
根据最近的模型,在双探头边带布里渊光时域分析(BOTDA)系统中,只要探测光功率低于受激布里渊散射(SBS)阈值,非局域效应就基本可以忽略不计。本文表明,实际上在这类系统中,在SBS阈值之前就会出现非局域效应。为了解释这些效应,有必要考虑SBS过程的完整光谱描述。泵浦脉冲会经历与频率相关的光谱变形,这在增益和损耗配置中对读出过程的影响有所不同。本文提供了这一现象的简单解析模型,并通过令人信服的实验数据进行了验证,结果显示出良好的一致性。我们研究的主要结论是,增益配置下的测量对这种非局域效应比损耗配置更具鲁棒性。实验和理论结果表明,对于总探测波光功率约为1 mW(每个边带500 μW)的情况,从布里渊损耗谱中检索到的布里渊频移(BFS)有大约1 MHz的上移,而从测量的布里渊增益谱中提取的BFS仅上移约0.6 MHz。这些结果对远程BOTDA系统制造商特别有意义。