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Linewidth and Noise Characterization for a Partially-Slotted, Single Mode Laser

机译:半开缝,单模激光的线宽和噪声特性

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We present an in-depth analysis of the linewidth of a partially slotted semiconductor laser utilized for single mode operation exhibiting integrability with other photonic devices. Theoretically, the reflection coefficients are calculated via the scattering matrix method and implemented within the multimode rate equations for a current-injected quantum well laser while including the effects of noise. The coupling between photon and carrier noise is included for completeness and explicitly derived in this case. The threshold current and linewidth as a function of injection current and cavity length are then calculated for an optimized slot size. Results show state-of-the-art capabilities for this laser to meet industrial requirements for linewidths well under 500 kHz. In addition, experimental data extracted via a heterodyne detection measurement of the electric field spectrum demonstrates similar trends with our theoretical calculations.
机译:我们目前对用于单模操作的部分开缝半导体激光器的线宽进行深入分析,该激光器显示出与其他光子器件的可集成性。从理论上讲,反射系数是通过散射矩阵法计算的,并在电流注入的量子阱激光器的多模速率方程中实现,同时还包括噪声的影响。为了完整性,包括了光子和载波噪声之间的耦合,并在这种情况下明确导出了耦合。然后针对最佳的槽尺寸计算阈值电流和线宽与注入电流和腔体长度的关系。结果表明,该激光器具有先进的功能,可以满足线宽低于500 kHz的工业要求。此外,通过外差法检测电场谱获得的实验数据与我们的理论计算也显示出相似的趋势。

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