论文标题
Brillouin逆转温度计用于模态温度控制
Brillouin Backaction Thermometry for Modal Temperature Control
论文作者
论文摘要
刺激的布里鲁因散射为高Q微孔子系统中的有效和窄线宽激光提供了光学增益。然而,布里深过程的热依赖性以及微孔子的依赖性对长期频率稳定操作施加了严格的温度控制要求。在这里,我们研究了布里鲁因背部动作,并将其用于测量和相位的模态温度,以锁定由布里鲁因相匹配条件定义的参考温度。在特定的激光波长下,可以通过调节谐振器自由光谱范围来精确设置参考温度。这种背离控制方法已在基于芯片的Brillouin激光器中证明,但可以应用于所有Brillouin激光平台。它提供了一种新的方法,用于在原子钟,频率计量和陀螺仪应用中布里鲁因激光器的频率稳定操作。
Stimulated Brillouin scattering provides optical gain for efficient and narrow-linewidth lasers in high-Q microresonator systems. However, the thermal dependence of the Brillouin process, as well as the microresonator, impose strict temperature control requirements for long-term frequency-stable operation. Here, we study Brillouin back action and use it to both measure and phase-sensitively lock modal temperature to a reference temperature defined by the Brillouin phase-matching condition. At a specific lasing wavelength, the reference temperature can be precisely set by adjusting resonator free spectral range. This backaction control method is demonstrated in a chip-based Brillouin laser, but can be applied in all Brillouin laser platforms. It offers a new approach for frequency-stable operation of Brillouin lasers in atomic clock, frequency metrology, and gyroscope applications.