Hsiung Pei-Lin, Li Xingde, Chudoba Christian, Hartl Ingmar, Ko Tony H, Fujimoto James G
Department of Electrical Engineering and Computer Science and the Research Laboratory of Electronics, Massachusetts Institute of Technology, Building 36-345,50 Vassar Street, Cambridge, Massachusetts 01239, USA.
Appl Opt. 2003 Feb 1;42(4):640-8. doi: 10.1364/ao.42.000640.
Techniques for high-speed delay scanning are important for low-coherence interferometry, optical coherence tomography, pump probe measurements, and other applications. We demonstrate a novel scanning delay line using a multiple-pass cavity. Differential delays are accumulated with each pass so that millimeter delays can be generated with tens of micrometer mirror displacements. With special design criteria, misalignment sensitivity can be dramatically reduced. The system is demonstrated to scan 6 m/s at 2-kHz repetition rates. Real-time optical coherence tomography imaging with 500 pixel images at four frames/s is performed. Using a Cr:forsterite laser source, we obtained axial image resolutions of 6 microm with 92-dB sensitivity.
高速延迟扫描技术对于低相干干涉测量、光学相干断层扫描、泵浦探测测量及其他应用而言至关重要。我们展示了一种使用多程腔的新型扫描延迟线。每次通过时都会累积差分延迟,从而能够通过几十微米的镜面位移产生毫米级的延迟。通过特殊的设计标准,可显著降低对准灵敏度。该系统在2 kHz的重复频率下能够实现6 m/s的扫描速度。以每秒四帧的速度对500像素的图像进行实时光学相干断层扫描成像。使用Cr:镁橄榄石激光源,我们获得了轴向图像分辨率为6微米、灵敏度为92分贝的结果。