Poiana Dragos A, Posada-Roman Julio E, Garcia-Souto Jose A
Sensors and Instrumentation Techniques Research Group, Electronics Technology Department, University Carlos III of Madrid, 28911 Leganes, Spain.
Sensors (Basel). 2022 May 7;22(9):3561. doi: 10.3390/s22093561.
Dual-comb multiheterodyne spectroscopy is a well-established technology for the highly sensitive real-time detection and measurement of the optical spectra of samples, including gases and fiber sensors. However, a common drawback of dual-comb spectroscopy is the need for a broadband amplitude-resolved absorption or reflection measurement, which increases the complexity of the dual comb and requires the precise calibration of the optical detection. In the present study, we present an alternative dispersion-based approach applied to fiber Bragg grating sensors in which the dual comb is compacted by a single dual-drive-unit optical modulator, and the fiber sensor is part of a dispersion interferometer. The incident dual comb samples a few points in the spectrum that are sensitive to Bragg wavelength changes through the optical phase. The spectra reading is improved due to the external interferometer and is desensitized to changes in the amplitude of the comb tones. The narrow-band detection of the fiber sensor dispersion changes that we demonstrate enables the compact, cost-effective, high-resolution multiheterodyne interrogation of high-throughput interferometric fiber sensors. These characteristics open its application both to the detection of fast phenomena, such as ultrasound, and to the precise measurement at high speed of chemical-/biological-sensing samples. The results with a low-reflectivity fiber Bragg grating show the detection of dynamic strain in the range of 215 nε with a 30 dB signal to noise ratio and up to 130 kHz (ultrasonic range).
双梳多外差光谱技术是一种成熟的技术,用于对包括气体和光纤传感器在内的样品的光谱进行高灵敏度实时检测和测量。然而,双梳光谱技术的一个常见缺点是需要进行宽带幅度分辨吸收或反射测量,这增加了双梳的复杂性,并且需要对光学检测进行精确校准。在本研究中,我们提出了一种基于色散的替代方法,应用于光纤布拉格光栅传感器,其中双梳由单个双驱动单元光调制器压缩,并且光纤传感器是色散干涉仪的一部分。入射的双梳通过光学相位对光谱中对布拉格波长变化敏感的几个点进行采样。由于外部干涉仪,光谱读数得到改善,并且对梳状信号幅度的变化不敏感。我们展示的光纤传感器色散变化的窄带检测能够对高通量干涉式光纤传感器进行紧凑、经济高效的高分辨率多外差询问。这些特性使其既适用于检测快速现象,如超声波,也适用于对化学/生物传感样品进行高速精确测量。低反射率光纤布拉格光栅的结果表明,能够检测到动态应变范围为215 nε,信噪比为30 dB,频率高达130 kHz(超声范围)。