Optical cavity spectroscopy using heterodyne detection with optical feedback laser frequency locking.

Applied Optics Pub Date : 2024-02-26 DOI:10.1364/ao.518338
Marianne Beaumont, I. Ventrillard, Daniele Romanini
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Abstract

We demonstrate an accurate high sensitivity method for cavity spectroscopy. We measure the frequency intervals of transverse electromagnetic modes relative to a fundamental mode in a high finesse optical resonator, and attribute their mode numbers unambiguously. A laser is frequency locked to a fundamental T E M 00 cavity mode by optical feedback, and phase modulation is used to obtain frequency side bands, which may come to resonance with other transverse cavity modes as the radio-frequency of the modulation is tuned. At these resonances, transmission of the side bands is sensitively detected by heterodyning with the carrier. We also analyze the transverse spatial profile of the heterodyne signal for identification of mode numbers. The adjustment of the Gaussian cavity model to the measured frequency intervals yields values of cavity length, mirror radius of curvature, and mirror ellipticity, with high precision to the ppm level.
利用光反馈激光频率锁定进行外差探测的光腔光谱学。
我们展示了一种精确的高灵敏度空腔光谱分析方法。我们测量了高精细度光学谐振器中横向电磁模式相对于基频模式的频率间隔,并明确地确定了它们的模式编号。通过光反馈将激光频率锁定在基本 T E M 00 腔模式上,然后使用相位调制来获得频率边带,随着调制射频的调整,这些边带可能会与其他横向腔模式产生共振。在这些共振处,侧带的传输可通过与载流子的异频共振被灵敏地检测到。我们还分析了外差信号的横向空间剖面,以确定模式数。根据测量到的频率间隔调整高斯腔模型,可以得到腔长、镜面曲率半径和镜面椭圆度的数值,精度高达 ppm 级。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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