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首页> 外文期刊>IEEE Journal of Quantum Electronics >Gain Enhancement in Cladding-Pumped Silicon Raman Amplifiers
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Gain Enhancement in Cladding-Pumped Silicon Raman Amplifiers

机译:熔覆泵浦硅拉曼放大器的增益增强

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Core-pumped silicon Raman amplifiers reported so far have exhibited gains of 4 dB or less in continuous-wave operation, limited by free-carrier absorption. Here we propose a device design that mitigates the problem of free-carrier absorption and leads to significantly higher gain values. In the new design, we surround the silicon waveguide with an additional rib-shaped passive cladding with a refractive index between that of silicon and the silica buffer. By injecting the pump power into the cladding, instead of directly into the silicon core, the overlap of the pump power with the silicon core is reduced and thus the effect of free-carrier absorption on the pump is weakened. The amplifier may therefore be made much longer, and higher total gains be achieved than in conventional core-pumped amplifiers. We present a detailed analysis of a design where a total gain as high as 18 and 34 dB may be achieved with pump powers of 300 mW and 1 W, respectively. We describe the model we have developed to design and optimize cladding-pumped silicon Raman amplifiers. Explicit expressions are formulated for the nonlinear effective areas for stimulated Raman scattering and two-photon absorption in silicon waveguides, taking into account the differing tensorial structures of these nonlinearities.
机译:迄今为止,受自由载流吸收的限制,迄今报道的抽芯硅拉曼放大器在连续波操作中的增益为4 dB或更小。在这里,我们提出了一种器件设计,该器件设计减轻了自由载流子吸收的问题并导致明显更高的增益值。在新的设计中,我们用额外的肋状无源包层围绕硅波导,该无源包层的折射率介于硅和二氧化硅缓冲层之间。通过将泵浦功率注入到覆层中,而不是直接注入硅芯中,可以减少泵浦功率与硅芯的重叠,从而减弱了自由载流子对泵浦吸收的影响。因此,与传统的核心泵浦放大器相比,该放大器可以做得更长,并且可以获得更高的总增益。我们对设计进行了详细的分析,其中分别以300 mW和1 W的泵浦功率可以实现高达18 dB和34 dB的总增益。我们描述了为设计和优化包层泵浦硅拉曼放大器而开发的模型。考虑到这些非线性的不同张量结构,对在硅波导中受激拉曼散射和双光子吸收的非线性有效区域制定了明确的表达式。

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