Maria Michael, Bravo Gonzalo Ivan, Feuchter Thomas, Denninger Mark, Moselund Peter M, Leick Lasse, Bang Ole, Podoleanu Adrian
Opt Lett. 2017 Nov 15;42(22):4744-4747. doi: 10.1364/OL.42.004744.
In this Letter, we investigate the possibility of using a commercially available Q-switch-pumped supercontinuum (QS-SC) source, operating in the kilohertz regime, for ultra-high resolution optical coherence tomography (UHR-OCT) in the 1300 nm region. The QS-SC source proves to be more intrinsically stable from pulse to pulse than a mode-locked-based SC (ML-SC) source while, at the same time, is less expensive. However, its pumping rate is lower than that used in ML-SC sources. Therefore, we investigate here specific conditions to make such a source usable for OCT. We compare images acquired with the QS-SC source and with a current state-of-the-art SC source used for imaging. We show that comparable visual contrast obtained with the two technologies is achievable by increasing the readout time of the camera to include a sufficient number of QS-SC pulses.
在本信函中,我们研究了使用一种市售的、工作在千赫兹 regime 的调 Q 泵浦超连续谱(QS-SC)源用于 1300nm 区域的超高分辨率光学相干断层扫描(UHR-OCT)的可能性。事实证明,与基于锁模的超连续谱(ML-SC)源相比,QS-SC 源在脉冲之间具有更高的固有稳定性,同时成本更低。然而,其泵浦速率低于 ML-SC 源中使用的泵浦速率。因此,我们在此研究使这种源可用于 OCT 的特定条件。我们比较了使用 QS-SC 源和当前用于成像的最先进超连续谱源采集的图像。我们表明,通过增加相机的读出时间以纳入足够数量的 QS-SC 脉冲,可以实现两种技术获得的可比视觉对比度。