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Low power generation of equalized broadband CW supercontinua using a novel technique incorporating modulation instability of line broadened pump

机译:使用结合了扩宽泵的调制不稳定性的新技术来产生均衡宽带连续波超连续谱的低功率

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Continuous-wave(CW) supercontinuum sources find applications in various domains such as imaging, spectroscopy, test and measurement. They are generated by pumping an optical fiber with a CW laser in the anomalous-dispersion region close to its zero-dispersion wavelength. Modulation instability(MI) sidebands are created, and further broadened and equalized by additional nonlinear processes generating the supercontinuum. This necessitates high optical powers and at lower powers, only MI sidebands can be seen without the formation of the supercontinuum. Obtaining a supercontinuum at low, easily manageable optical powers is attractive for many applications, but current techniques cannot achieve this. In this work, we propose a new mechanism for low power supercontinuum generation utilizing the modified MI gain spectrum for a line-broadened, decorrelated pump. A novel two-stage generation mechanism is demonstrated, where the first stage constituting standard telecom fiber slightly broadens the input pump linewidth. However, this process in the presence of dispersion, acts to de-correlate the different spectral components of the pump signal. When this is sent through highly nonlinear fiber near its zero-dispersion wavelength, the shape of the MI gain spectrum is modified, and this process naturally results in the generation of a broadband, equalized supercontinuum source at much lower powers than possible using conventional single stage spectral broadening. Here, we demonstrate a ~0.5W supercontinuum source pumped using a ~4W Erbium-Ytterbium co-doped fiber laser with a bandwidth spanning from 1300nm to 2000nm. We also demonstrate an interesting behaviour of this technique of relative insensitivity to the pump wavelength vis-a-vis zero-dispersion wavelength of the fiber.
机译:连续波(CW)超连续谱源可在成像,光谱学,测试和测量等各个领域中找到应用。它们是通过在接近零色散波长的反常色散区域中用CW激光泵浦光纤来产生的。创建了调制不稳定性(MI)边带,并通过生成超连续谱的其他非线性过程进一步扩展和均衡了边带。这需要较高的光功率,而在较低的功率下,只有MI边带可见,而不会形成超连续谱。以低,易于管理的光功率获得超连续谱对于许多应用很有吸引力,但是当前的技术无法实现这一点。在这项工作中,我们提出了一种新的机制,用于低功率超连续谱的产生,该机制利用改进的MI增益谱用于线路扩展的去相关泵。演示了一种新颖的两级生成机制,其中构成标准电信光纤的第一级会稍微加宽输入泵浦的线宽。然而,在存在色散的情况下,该过程用于使泵浦信号的不同频谱分量去相关。当通过零色散波长附近的高度非线性光纤发送光时,MI增益谱的形状将被修改,并且此过程自然会产生宽带,均衡的超连续谱源,其功率要比传统单级技术低得多光谱展宽。在这里,我们演示了使用〜4W ---共掺杂光纤激光器泵浦的〜0.5W超连续谱光源,其带宽范围为1300nm至2000nm。我们还证明了该技术相对于泵浦波长相对于光纤零色散波长相对不敏感的有趣行为。

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