首页> 外文期刊>Optics Communications: A Journal Devoted to the Rapid Publication of Short Contributions in the Field of Optics and Interaction of Light with Matter >Two-tone frequency modulation saturation spectroscopy for tunable frequency offset locking of a single laser
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Two-tone frequency modulation saturation spectroscopy for tunable frequency offset locking of a single laser

机译:用于可调谐频率偏移锁定单个激光的双音频调制饱和光谱

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The two-tone frequency modulation spectroscopy (TTFMS) is widely used for gas trace detection with its low noise absorption signal. In this paper we propose and implement the TTFMS scheme for frequency offset locking a single diode laser to an atomic resonance line by using its dispersion signal. The TTFMS theory is first discussed under the assumption that the intermediate modulation frequency is comparable to the linewidth of the absorption feature, and the dependence of the TTFMS absorption and dispersion features on the intermediate modulation frequency and modulation index are investigated theoretically. Based on a fiber-coupled electro-optic modulator (EOM) with two-tone modulation, we experimentally demonstrated the performance of the frequency offset locking method. The result shows a short-term frequency stability of the frequency offset locked laser reached around 1.1 x 10(-11), with an averaging time of 2 s. This method can find wide applications in fields requiring widely tunable frequency offset locking a single laser to the atomic resonance line, like precision spectroscopy and Raman optics for atom interferometers.
机译:双音频调制光谱(TTFMS)被广泛地用于气体痕量检测具有低噪声吸收信号。在本文中,我们提出和实施频率偏移通过使用其分散信号锁定的单个二极管激光器到原子共振线的TTFMS方案。所述TTFMS理论假设中间调制频率是可比的吸收特征的线宽,并且理论上研究了TTFMS吸收和分散特征在中间调制频率及调制指数的依赖下首先讨论。基于与双音调制的光纤耦合的电光调制器(EOM),我们通过实验证明了频率的偏移性能锁定方法。结果示出了频率的短期频率稳定性偏移锁定激光器达到约1.1×10(-11),以2秒的平均时间。该方法可以在字段需要广泛的可调谐频率偏移锁定单个激光到原子共振线,像精密光谱和拉曼光学器件,用于原子干涉广泛的应用。

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