激光线宽
谐振器
材料科学
拉曼激光器
拉曼光谱
激光器
光电子学
质量(理念)
光学
拉曼散射
物理
量子力学
作者
Cheng-Nian Liu,Min Wang,Shuosheng Liu,Bing Duan,Yingzhan Yan,Yu Wu,Xiao‐Chong Yu,Bei‐Bei Li,Daquan Yang
标识
DOI:10.1088/1674-1056/adea5a
摘要
Abstract The enhancement of the microcavity quality factor contributes to fundamental linewidth reduction in microcavity lasers. This study demonstrates silica microrod resonators with quality factors approaching 10 9 , fabricated by CO 2 laser reflow technology. To improve practical applicability, low-loss package techniques were developed, yielding packaged resonators with optimized optical performance. Using this platform, stimulated Raman lasing was achieved with a pump mode Q-factor of 1.333×10 9 , exhibiting a threshold of 0.765 mW. The laser output stability was characterized by a standard deviation of 0.671 mV over 45 minutes of operation, with corresponding Allan deviation analysis. At the maximum output power of 106.4 μW, the measured frequency noise spectral density reached 0.46 Hz 2 /Hz, corresponding to a linewidth of 2.89 Hz. Thermal tuning of the packaged module achieved a wavelength shift of 0.206 nm, with a temperature sensitivity of 8.92 pm/℃. This work establishes a new technical pathway for developing compact narrow-linewidth lasers, showing significant potential for medical diagnostics, optical communications, and defense applications.
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