激光线宽
材料科学
半导体激光器理论
光电子学
激光器
光学
相对强度噪声
相位噪声
分布反馈激光器
注射播种机
噪音(视频)
量子点激光器
激光功率缩放
光放大器
半导体
波导管
相(物质)
降噪
光谱密度
光学腔
强度(物理)
功率(物理)
光功率
量子阱
动态范围
半导体光学增益
领域(数学)
相位调制
近场和远场
还原(数学)
作者
Siqi Li,Hua Wang,Yuxin Lei,Y.R. Chen,Peng Jia,Yubing Wang,Dexiao Zhang,Tianye Zhao,Lei Liang,Cheng Qiu,Yue Song,Li Qin,Lijun Wang
摘要
Semiconductor lasers with ultra-low noise and narrow linewidth are crucial for advanced applications, including high-performance communication, optical sensing, and quantum metrology. In this work, we demonstrate a compact external cavity semiconductor laser that achieves high output power, narrow spectral linewidth, and low noise. We utilize carrier–photon interactions to establish an optical negative feedback between optical frequency and intensity and design an asymmetric reflectivity external cavity waveguide that optimizes the optical field distribution to suppress partial phase noise, thereby enabling additional noise reduction and linewidth narrowing. The spectral linewidth was compressed by three orders of magnitude to 2.05 kHz, the relative intensity noise was reduced to −164.2 dBc/Hz, the side mode suppression ratio reached 61.18 dB, and the output power peaked at 150.8 mW. Moreover, the proposed laser structure exhibits excellent spectral and power stability and offers significant advantages through reduced manufacturing cost and process complexity, thereby facilitating the further development and application of high-power, narrow-linewidth lasers.
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