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Demonstration of minute continuous-wave triggered supercontinuum generation at 1 um for high-speed bio-photonic applications

机译:演示了用于高速生物光子应用的1 um微小连续波触发超连续谱的产生

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Ultra-broadband supercontinuum (SC) at 1-um wavelength is regarded as diagnostics window in bio-photonics due to its large penetration depth in tissues and less Rayleigh scattering. Dispersive Fourier transform (DFT) is an important technique to realize the high-speed, ultra-fast and high-throughput spectroscopy. Thus, a stable light source with good temporal stability plays an important role in the bio-imaging and spectroscopy applications. We here demonstrate stabilized and enhanced SC generation at 1 μm by a minute continuous-wave (CW) triggering scheme. By introducing a weak CW (~200,000 times weaker than the pump), a significant broadening in the SC bandwidth and an improvement in the temporal stability can be obtained. Over 8 dB gain is achieved in both blue and red edges and the SC spectrum can span from 900 run to over 1300 nm with the CW trigger. We present the CW-triggered SC capability of enabling highspeed spectroscopy based on DFT at 1 μm. In regards to the performance of DFT, the wavelength-time mapping fluctuation reduced by 50% which is an indication of the improvement of the temporal stability. This triggering scheme allows, for the first time, 1-μm DFT at a spectral acquisition rate of 20 MHz with good temporal stability - paving the way toward realizing practical real-time, ultrafast biomedical spectroscopy and imaging.
机译:波长为1um的超宽带超连续谱(SC)被视为生物光子学的诊断窗口,这是因为其在组织中的穿透深度大且瑞利散射较少。色散傅里叶变换(DFT)是实现高速,超快速和高通量光谱的一项重要技术。因此,具有良好时间稳定性的稳定光源在生物成像和光谱学应用中起着重要作用。我们在这里通过分钟连续波(CW)触发方案证明了在1μm处稳定和增强的SC生成。通过引入较弱的CW(比泵弱200,000倍),可以显着扩展SC带宽并改善时间稳定性。蓝边和红边均获得了超过8 dB的增益,并且使用CW触发,SC光谱范围可以从900nm扩展到1300 nm以上。我们介绍了CW触发的SC功能,该功能基于1μm的DFT实现了高速光谱分析。关于DFT的性能,波长-时间映射波动减少了50%,这表明时间稳定性得到了改善。该触发方案首次允许以20 MHz的光谱采集速率进行1-μmDFT,具有良好的时间稳定性,从而为实现实际的实时,超快生物医学光谱学和成像铺平了道路。

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