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用于超高分辨率傅里叶域光学相干断层扫描的、在1020纳米处具有单个半导体光放大器的宽调谐范围波长扫描激光器。

Wide tuning range wavelength-swept laser with a single SOA at 1020 nm for ultrahigh resolution Fourier-domain optical coherence tomography.

作者信息

Lee Sang-Won, Song Hyun-Woo, Jung Moon-Youn, Kim Seung-Hwan

机构信息

BT Convergence Research Department, Electronics and Telecommunications Research Institute, 218 Gajeongno, Yuseong-gu, Daejeon 305-700, Korea.

出版信息

Opt Express. 2011 Oct 24;19(22):21227-37. doi: 10.1364/OE.19.021227.

Abstract

In this study, we demonstrated a wide tuning range wavelength-swept laser with a single semiconductor optical amplifier (SOA) at 1020 nm for ultrahigh resolution, Fourier-domain optical coherence tomography (UHR, FD-OCT). The wavelength-swept laser was constructed with an external line-cavity based on a Littman configuration. An optical wavelength selection filter consisted of a grating, a telescope, and a polygon scanner. Before constructing the optical wavelength selection filter, we observed that the optical power, the spectrum bandwidth, and the center wavelength of the SOA were affected by the temperature of the thermoelectric (TE) cooler in the SOA mount as well as the applied current. Therefore, to obtain a wide wavelength tuning range, we adjusted the temperature of the TE cooler in the SOA mount. When the temperature in the TE cooler was 9 °C, our swept source had a tuning range of 142 nm and a full-width at half-maximum (FWHM) of 121.5 nm at 18 kHz. The measured instantaneous spectral bandwidth (δλ) is 0.085 nm, which was measured by an optical spectrum analyzer with a resolution bandwidth of 0.06 nm. This value corresponds to an imaging depth of 3.1 mm in air. Additionally, the averaged optical power of our swept source was 8.2 mW. In UHR, FD/SS-OCT using our swept laser, the measured axial resolution was 4.0 μm in air corresponding to 2.9 μm in tissue (n = 1.35). The sensitivity was measured to be 93.1 dB at a depth of 100 μm. Finally, we obtained retinal images (macular and optic disk) and a corneal image.

摘要

在本研究中,我们展示了一种用于超高分辨率傅里叶域光学相干断层扫描(UHR,FD - OCT)的宽调谐范围扫频激光器,其在1020 nm处采用单个半导体光放大器(SOA)。该扫频激光器基于Littman配置构建了一个外线腔。一个光学波长选择滤波器由一个光栅、一个望远镜和一个多边形扫描仪组成。在构建光学波长选择滤波器之前,我们观察到SOA的光功率、光谱带宽和中心波长受到SOA支架中热电(TE)冷却器的温度以及施加电流的影响。因此,为了获得宽波长调谐范围,我们调整了SOA支架中TE冷却器的温度。当TE冷却器中的温度为9°C时,我们的扫频光源在18 kHz时的调谐范围为142 nm,半高全宽(FWHM)为121.5 nm。通过分辨率带宽为0.06 nm的光谱分析仪测量的瞬时光谱带宽(δλ)为0.085 nm。该值对应于空气中3.1 mm的成像深度。此外,我们扫频光源的平均光功率为8.2 mW。在使用我们的扫频激光器的UHR,FD/SS - OCT中,在空气中测量的轴向分辨率为4.0μm,在组织中(n = 1.35)对应于2.9μm。在100μm深度处测量的灵敏度为93.1 dB。最后,我们获得了视网膜图像(黄斑和视盘)以及一张角膜图像。

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