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Akinetic swept source with adjustable coherence length for SS-OCT

机译:用于SS-OCT的可调节相干长度的动力扫描源

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An electronically controlled optical swept source (SS) at 1550 ran using mode locking in a dispersive ring cavity is described. Active mode-locking was achieved by directly modulating the current of a semiconductor optical amplifier (SOA) used as a gain medium. In the static regime, parameters such as linewidth, tuning bandwidth and contrast were measured, while the axial range was determined dynamically. Two types of fiber, dispersion compensation and single mode, are employed in the laser ring cavity. It is demonstrated that the relative lengths of the two types of fiber have little effect on the linewidth, while more control on the linewidth is obtained via the frequency of the signal driving the SOA. Linewidths less than 60 pm and over 1 ran were measured in the static regime while driving the SOA at 50 - 500 MHz. The narrowest linewidths were achieved where the proportion of dispersion compensation fiber in the cavity is 80-90% of the total length. The optical source is developed to respond to the demands of OCT applications in general as well as address the need for low cost tunable lasers for configurations where a large tuning bandwidths and long coherence length might not be necessary.
机译:描述了使用模式锁定在分散环腔中的1550 ran的电子控制光学扫描源(SS)。通过直接调制用作增益介质的半导体光放大器(SOA)的电流来实现主动模式锁定。在静态方案中,测量诸如线宽,调谐带宽和对比度的参数,而轴向范围是动态地确定的。在激光环腔中采用两种类型的光纤,色散补偿和单模。证明两种类型的光纤的相对长度对线宽几乎没有影响,而通过驱动SOA的信号的频率获得线宽的更多控制。在静态状态下在静态状态下在静态状态下在50-500MHz驱动SOA时测量较小的60μm和超过1次ran。达到最窄的线宽,其中腔中的分散补偿纤维的比例为总长度的80-90%。光源开发为响应OCT应用的需求,以及解决可能不需要大调谐带宽和长相干长度的配置的低成本可调激光器的需求。

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