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用于高分辨率光谱分析的光电等效窄带滤波器

An Optoelectronic Equivalent Narrowband Filter for High Resolution Optical Spectrum Analysis.

作者信息

Feng Kunpeng, Cui Jiwen, Dang Hong, Wu Weidong, Sun Xun, Jiang Xuelin, Tan Jiubin

机构信息

Center of Ultra-Precision Optoelectronic Instrument, Harbin Institute of Technology, Harbin 150080, China.

Shanghai Micro Electronics Equipment Co., Ltd., Shanghai 201203, China.

出版信息

Sensors (Basel). 2017 Feb 10;17(2):348. doi: 10.3390/s17020348.

Abstract

To achieve a narrow bandwidth optical filter with a wide swept range for new generation optical spectrum analysis (OSA) of high performance optical sensors, an optoelectronic equivalent narrowband filter (OENF) was investigated and a swept optical filter with bandwidth of several MHz and sweep range of several tens of nanometers was built using electric filters and a sweep laser as local oscillator (LO). The principle of OENF is introduced and analysis of the OENF system is presented. Two electric filters are optimized to be RBW filters for high and medium spectral resolution applications. Both simulations and experiments are conducted to verify the OENF principle and the results show that the power uncertainty is less than 1.2% and the spectral resolution can reach 6 MHz. Then, a real-time wavelength calibration system consisting of a HCN gas cell and Fabry-Pérot etalon is proposed to guarantee a wavelength accuracy of ±0.4 pm in the C-band and to reduce the influence of phase noise and nonlinear velocity of the LO sweep. Finally, OSA experiments on actual spectra of various optical sensors are conducted using the OENF system. These experimental results indicate that OENF system has an excellent capacity for the analysis of fine spectrum structures.

摘要

为了实现用于高性能光学传感器新一代光谱分析(OSA)的具有宽扫描范围的窄带宽光学滤波器,研究了一种光电等效窄带滤波器(OENF),并使用电滤波器和扫描激光器作为本地振荡器(LO)构建了带宽为几兆赫兹、扫描范围为几十纳米的扫描光学滤波器。介绍了OENF的原理并对OENF系统进行了分析。优化了两个电滤波器,使其成为用于高、中光谱分辨率应用的RBW滤波器。进行了仿真和实验以验证OENF原理,结果表明功率不确定度小于1.2%,光谱分辨率可达6 MHz。然后,提出了一种由HCN气室和法布里 - 珀罗标准具组成的实时波长校准系统,以确保在C波段波长精度达到±0.4 pm,并减少LO扫描的相位噪声和非线性速度的影响。最后,使用OENF系统对各种光学传感器的实际光谱进行了OSA实验。这些实验结果表明,OENF系统具有出色的精细光谱结构分析能力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b83a/5336093/9dfd85179f07/sensors-17-00348-g001.jpg

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