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首页> 外文期刊>Laser physics letters >Digitally tunable dual wavelength emission from semiconductor ring lasers with filtered optical feedback
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Digitally tunable dual wavelength emission from semiconductor ring lasers with filtered optical feedback

机译:具有滤波后的光反馈的半导体环形激光器的数字可调双波长发射

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摘要

We report on a novel integrated approach to obtain dual wavelength emission from a semiconductor laser based on on-chip filtered optical feedback. Using this approach, we show experiments and numerical simulations of dual wavelength emission of a semiconductor ring laser. The filtered optical feedback is realized on-chip by employing two arrayed waveguide gratings to split/recombine light into different wavelength channels. Semiconductor optical amplifiers are placed in the feedback loop in order to control the feedback strength of each wavelength channel independently. By tuning the current injected into each of the amplifiers, we can effectively cancel the gain difference between the wavelength channels due to fabrication and material dichroism, thus resulting in stable dual wavelength emission. We also explore the accuracy needed in the operational parameters to maintain this dual wavelength emission.
机译:我们报告了一种新颖的集成方法,可基于片上滤波后的光反馈从半导体激光器获得双波长发射。使用这种方法,我们展示了半导体环形激光器双波长发射的实验和数值模拟。通过使用两个阵列的波导光栅将光分离/重组为不同的波长通道,可以在芯片上实现滤波后的光反馈。半导体光放大器放置在反馈环路中,以便独立控制每个波长通道的反馈强度。通过调节注入每个放大器的电流,我们可以有效地消除由于制造和材料二色性导致的波长通道之间的增益差异,从而实现稳定的双波长发射。我们还探索了维持该双波长发射所需的操作参数精度。

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