Huber Robert, Adler Desmond C, Fujimoto James G
Department of Electrical Engineering and Computer Science and Research Laboratory of Electronics, Massachusetts Institute of Technology, Cambridge, Massachusetts 02139, USA.
Opt Lett. 2006 Oct 15;31(20):2975-7. doi: 10.1364/ol.31.002975.
We describe buffered Fourier domain mode locking (FDML), a technique for tailoring the output and multiplying the sweep rate of FDML lasers. Buffered FDML can be used to create unidirectional wavelength sweeps from the normal bidirectional sweeps in an FDML laser without sacrificing sweep rate. We also investigate the role of the laser source in dynamic range versus sensitivity performance in optical coherence tomography (OCT) imaging. Unidirectional sweep rates of 370 kHz over a 100 nm range at a center wavelength of 1300 nm are achieved. High-speed, swept-source OCT is demonstrated at record speeds of up to 370,000 axial scans per second.
我们描述了缓冲傅里叶域锁模(FDML)技术,这是一种用于调整FDML激光器输出并提高其扫描速率的技术。缓冲FDML可用于在不牺牲扫描速率的情况下,从FDML激光器的正常双向扫描中创建单向波长扫描。我们还研究了激光源在光学相干断层扫描(OCT)成像中的动态范围与灵敏度性能方面的作用。在中心波长为1300nm时,实现了在100nm范围内370kHz的单向扫描速率。以高达每秒370,000次轴向扫描的创纪录速度展示了高速扫频源OCT。