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首页> 外文期刊>Journal of Lightwave Technology >Ultra-Fast Wavemeter for CW Laser Based on Wavelength-to-Time Mapping
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Ultra-Fast Wavemeter for CW Laser Based on Wavelength-to-Time Mapping

机译:基于波长到时间映射的连续波激光器超快速波表

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An ultra-fast continuous wave (CW) wavemeter with the 51 MHz update rate is proposed and demonstrated based on wavelength-to-time mapping and optical heterodyne. The system consists of a mode-locked laser (MLL) as the probe source and a reference tunable laser. The mode-locked pulses emitted from the MLL are first stretched in a dispersive element and its spectrum is mapped into time-domain. Then, the stretched pulses beat with reference beam and the beam under test in two arms, respectively. By measuring the time delay between the beating results in two arms, the wavelength information can be obtained. In the meantime, we introduce cross correlation to our data processing to improve themeasurement resolution. Aresolution of about 0.03nm is achieved. The spectral range of the ultra-fast wavelength meter is about 10 nm. Using the proposed scheme, we successfully trace the wavelength variation of a linearly chirped laser source with the 125 kHz repetition rate.
机译:基于波长到时间的映射和光学外差,提出并演示了更新速率为51 MHz的超快连续波(CW)波长计。该系统由锁模激光器(MLL)作为探头源和参考可调激光器组成。从MLL发射的锁模脉冲首先在色散元件中扩展,其频谱映射到时域。然后,被拉伸的脉冲分别在两个臂中被参考光束和被测光束拍打。通过测量两个拍打结果之间的时间延迟,可以获得波长信息。同时,我们在数据处理中引入互相关以提高测量分辨率。达到约0.03nm的分辨率。超快波长仪的光谱范围约为10 nm。使用提出的方案,我们成功地跟踪了线性chi激光源的波长变化,其重复频率为125 kHz。

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