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A versatile, C-band spanning, high repetition rate, cascaded four wave mixing based multi wavelength source

机译:通用的C波段扩展,高重复率,基于级联四波混频的多波长源

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Demand for bandwidth in optical communications necessitates the development of scalable transceivers that cater to these needs. For this, in DWDM systems with/without Superchannels, the optical source needs to provide a large number of optical carriers. The conventional method of utilizing separate lasers makes the system bulky and inefficient. A multi-wavelength source which spans the entire C-band with sufficient power is needed to replace individual lasers. In addition, multi-wavelength sources at high repetition rates are necessary in various applications such as spectroscopy, astronomical spectrograph calibration, microwave photonics and arbitrary waveform generation. Here, we demonstrate a novel technique for equalized, multi-wavelength source generation which generates over 160 lines at 25GHz repetition rate, spanning the entire C-band with total power >700mW. A 25GHz Comb with 16 lines is generated around 1550nm starting with two individual lasers using a system of directly driven, cascaded intensity and phase modulators. This is then amplified to >1W using an optimized, Erbium-Ytterbium co-doped fiber amplifier. Subsequently, they are passed through Highly NonLinear Fiber at its zero-dispersion wavelength. Through cascaded Four Wave Mixing, a ten-fold increase in the number of lines is demonstrated. A bandwidth of 4.32 THz (174 lines, SNR>15 dB), covering the entire C-band is generated. Enhanced spectral broadening is enabled by two key aspects - Dual laser input provides the optimal temporal profile for spectral broadening while the comb generation prior to amplification enables greater power scaling by suppression of Brillouin scattering. The multi-wavelength source is extremely agile with tunable center frequency and repetition rate.
机译:对光通信带宽的需求使得必须开发可满足这些需求的可伸缩收发器。为此,在具有/不具有超级通道的DWDM系统中,光源需要提供大量的光载波。利用分离激光器的常规方法使系统笨重且效率低下。需要一个具有足够功率跨越整个C波段的多波长光源来替换单个激光器。另外,在各种应用中,例如光谱学,天文光谱仪校准,微波光子学和任意波形产生,都需要高重复率的多波长光源。在这里,我们展示了一种用于均衡,多波长源生成的新技术,该技术以25GHz的重复频率生成了160条线,覆盖了整个C波段,总功率> 700mW。使用直接驱动的级联强度和相位调制器系统,从两个单独的激光器开始,在1550nm左右产生具有16条线的25GHz Comb。然后使用优化的Er--共掺杂光纤放大器将其放大到> 1W。随后,它们以零色散波长通过高度非线性光纤。通过级联的四波混频,线数增加了十倍。生成覆盖整个C波段的4.32 THz带宽(174条线,SNR> 15 dB)。增强的光谱展宽可以通过两个关键方面实现:双激光输入为光谱展宽提供了最佳的时间分布,而放大之前的梳状产生可通过抑制布里渊散射来实现更大的功率缩放。多波长源的中心频率和重复率可调,因此非常灵活。

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