Preussler Stefan, Zadok Avi, Wiatrek Andrzej, Tur Moshe, Schneider Thomas
Institut für Hochfrequenztechnik, Hochschule für Telekommunikation, D-04277 Leipzig, Germany.
Opt Express. 2012 Jun 18;20(13):14734-45. doi: 10.1364/OE.20.014734.
High-resolution, wide-bandwidth optical spectrum analysis is essential to the measuring and monitoring of advanced optical, millimeter-wave, and terahertz communication systems, sensing applications and device characterization. One category of high-resolution spectrum analyzers reconstructs the power spectral density of a signal under test by scanning a Brillouin gain line across its spectral extent. In this work, we enhance both the resolution and the optical rejection ratio of such Brillouin-based spectrometers using a combination of two techniques. First, two Brillouin loss lines are superimposed upon a central Brillouin gain to reduce its bandwidth. Second, the vector attributes of stimulated Brillouin scattering amplification in standard, weakly birefringent fibers are used to change the signal state of polarization, and a judiciously aligned output polarizer discriminates between amplified and un-amplified spectral contents. A frequency resolution of 3 MHz, or eight orders of magnitude below the central optical frequency, is experimentally demonstrated. In addition, a weak spectral component is resolved in the presence of a strong adjacent signal, which is 30 dB stronger and detuned by only 60 MHz. The measurement method involves low-bandwidth direct detection, and does not require heterodyne beating. The measurement range of the proposed method is scalable to cover the C + L bands, depending on the tunable pump source. The accuracy of the measurements requires that the pump frequencies are well calibrated.
高分辨率、宽带宽光谱分析对于先进光学、毫米波和太赫兹通信系统、传感应用以及器件特性的测量和监测至关重要。一类高分辨率光谱分析仪通过在其光谱范围内扫描布里渊增益线来重建被测信号的功率谱密度。在这项工作中,我们结合两种技术提高了此类基于布里渊的光谱仪的分辨率和光学抑制比。首先,将两条布里渊损耗线叠加在中心布里渊增益上以减小其带宽。其次,利用标准弱双折射光纤中受激布里渊散射放大的矢量特性来改变信号偏振态,并且一个精心对准的输出偏振器区分放大和未放大的光谱成分。实验证明了频率分辨率为3 MHz,比中心光频率低八个数量级。此外,在存在比其强30 dB且仅失谐60 MHz的强相邻信号的情况下,一个弱光谱成分得到了解析。该测量方法涉及低带宽直接检测,并且不需要外差拍频。根据可调谐泵浦源,所提出方法的测量范围可扩展以覆盖C + L波段。测量的准确性要求泵浦频率得到良好校准。