Okano Makoto, Watanabe Shinichi
Opt Express. 2022 Oct 24;30(22):39613-39623. doi: 10.1364/OE.472192.
By using two mutually phase-locked optical frequency combs with slightly different repetition rates, we demonstrate asynchronous optical-sampling terahertz time-domain spectroscopy (ASOPS THz-TDS) without using any trigger signals or optical delay lines. Due to a tight stabilization of the repetition frequencies, it was possible to accumulate the data over 48 minutes in a triggerless manner without signal degradation. The fractional frequency stability of the measured terahertz signal is evaluated to be ∼8.0 × 10 after 730 s. The frequency accuracy of the obtained terahertz spectrum is ensured by phase-locking the two frequency combs to a frequency standard. To clarify the performance of our system, we characterized the absorption line of water vapor around 0.557 THz. The good agreement of the measured center frequency and linewidth with the values predicted from the HITRAN database verifies the suitability of our ASOPS THz-TDS system for precise measurements.
通过使用两个重复频率略有不同且相互锁相的光学频率梳,我们展示了无需使用任何触发信号或光学延迟线的异步光学采样太赫兹时域光谱(ASOPS THz - TDS)。由于重复频率的严格稳定,能够以无触发方式在48分钟内累积数据而不会导致信号退化。在730秒后,测得的太赫兹信号的分数频率稳定性评估为约8.0×10⁻⁹。通过将两个频率梳与频率标准锁相,确保了所获得太赫兹光谱的频率精度。为了阐明我们系统的性能,我们对0.557太赫兹附近的水蒸气吸收线进行了表征。测得的中心频率和线宽与从HITRAN数据库预测的值良好吻合,验证了我们的ASOPS THz - TDS系统适用于精确测量。