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Sensitivity enhancement in swept-source optical coherence tomography by parametric balanced detector and amplifier

机译:通过参数平衡检测器和放大器增强扫频光学相干断层扫描的灵敏度

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摘要

We proposed a sensitivity enhancement method of the interference-based signal detection approach and applied it on a swept-source optical coherence tomography (SS-OCT) system through all-fiber optical parametric amplifier (FOPA) and parametric balanced detector (BD). The parametric BD was realized by combining the signal and phase conjugated idler band that was newly-generated through FOPA, and specifically by superimposing these two bands at a photodetector. The sensitivity enhancement by FOPA and parametric BD in SS-OCT were demonstrated experimentally. The results show that SS-OCT with FOPA and SS-OCT with parametric BD can provide more than 9 dB and 12 dB sensitivity improvement, respectively, when compared with the conventional SS-OCT in a spectral bandwidth spanning over 76 nm. To further verify and elaborate their sensitivity enhancement, a bio-sample imaging experiment was conducted on loach eyes by conventional SS-OCT setup, SS-OCT with FOPA and parametric BD at different illumination power levels. All these results proved that using FOPA and parametric BD could improve the sensitivity significantly in SS-OCT systems.
机译:我们提出了一种基于干扰的信号检测方法的灵敏度增强方法,并将其通过全光纤光学参量放大器(FOPA)和参量平衡检测器(BD)应用于扫频光学相干层析成像(SS-OCT)系统。参数化BD是通过组合通过FOPA新生成的信号和相位共轭的空转带而实现的,特别是将这两个带叠加在光电探测器上来实现的。实验证明了FOPA和参比BD在SS-OCT中的敏感性增强。结果表明,与传统的SS-OCT相比,具有FOPA的SS-OCT和带参量BD的SS-OCT可以在76 nm以上的光谱带宽中分别提供超过9 dB和12 dB的灵敏度提高。为了进一步验证和阐述其灵敏度增强,通过常规SS-OCT设置,带FOPA的SS-OCT和参数BD在不同的照明功率水平下对泥ach眼睛进行了生物样品成像实验。所有这些结果证明,使用FOPA和参数BD可以显着提高SS-OCT系统的灵敏度。

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