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Fast mode-hop-free acousto-optically tuned laser: theoretical and experimental investigations

机译:快速无模跳的声光调谐激光器:理论和实验研究

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We developed a theory that describes fast mode-hop-free tuning of an external cavity diode laser in Littrow configuration with two acousto-optic modulators (AOMs) inside the laser cavity. The theory is based on synchronous shifting of the external cavity modes and the Littrow grating selectivity. It allows calculating the driving signals of both AOMs in order to reach a desired temporal variation of the laser frequency, including particularly fast tuning as well as an arbitrary shape of the tuning function. Furthermore, we present a laser setup for which the needed signals for both AOMs are generated by two direct digital synthesizer circuits. Thereby we were able to verify the theoretical predictions experimentally, achieving, e.g., sinusoidal single-mode tuning of the laser frequency over 40 GHz at a repetition rate of 10 kHz and over 12 GHz at 25 kHz. Finally, the limitations of the theory are discussed.
机译:我们开发了一种理论,该理论描述了Littrow配置中带有两个声光调制器(AOM)的外腔二极管激光器的快速无模跳变调谐。该理论基于外腔模式的同步移位和Littrow光栅的选择性。它允许计算两个AOM的驱动信号,以便达到所需的激光频率的时间变化,包括特别快速的调谐以及调谐函数的任意形状。此外,我们介绍了一种激光设置,通过两个直接数字合成器电路为两个AOM生成所需的信号。因此,我们能够通过实验验证理论预测,例如以40 kHz的重复频率以10 kHz的重复频率和以25 kHz的频率在12 GHz的频率实现正弦单模调谐。最后,讨论了该理论的局限性。

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