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电场诱导二次谐波信号的灵敏检测。

Sensitive detection of electric field-induced second harmonic signals.

作者信息

Hogue Justin, Cusson Patrick, Meunier Michel, Seletskiy Denis V, Reuter Stephan

出版信息

Opt Lett. 2023 Sep 1;48(17):4601-4604. doi: 10.1364/OL.492443.

Abstract

We demonstrate sensitive electric field measurements by coherent homodyne amplification of the electric field induced second harmonic generation (E-FISH) technique. In the process of E-FISH, an applied electric field breaks the centrosymmetry of an otherwise homogeneous medium, in turn promoting the generation of the second harmonic frequency of an incident field. Due to weak third-order hyperpolarizability and the requirement of an applied field to break the symmetry, the E-FISH technique has been mainly used to study high fields, also requiring a strong optical field and sensitive detection. Here we superimpose the E-FISH signal with an auxiliary beam, also termed a local oscillator (LO), at double the incident frequency. Coherent superposition of the LO and the E-FISH output (LOE-FISH) allows for a homodyne amplification of the otherwise weak nonlinear signal. We have demonstrated an increase of signal-to-noise by a factor of seven, which results in a measurement time reduction of a factor of 49. This technique, LOE-FISH, has a number of advantages: detection with intensified detectors is not required. Furthermore, instead of millijoule pulsed lasers, we can work with microjoule pulsed lasers, which allows measuring at repetition rates of megahertz and opens single shot and real-time capability. The LOE-FISH technique increases in sensitivity at lower electric field values. Our work is a demonstration of the principle. Already with our first results from the demonstration, one can see the high potential of LOE-FISH.

摘要

我们通过电场诱导二次谐波产生(E-FISH)技术的相干零差放大展示了灵敏的电场测量。在E-FISH过程中,施加的电场打破了原本均匀介质的中心对称性,进而促进了入射场二次谐波频率的产生。由于三阶超极化率较弱以及需要施加电场来打破对称性,E-FISH技术主要用于研究高场,这也需要强光场和灵敏检测。在此,我们将E-FISH信号与一个辅助光束(也称为本地振荡器(LO))以入射频率的两倍进行叠加。LO与E-FISH输出(LOE-FISH)的相干叠加使得原本微弱的非线性信号能够实现零差放大。我们已证明信噪比提高了7倍,这使得测量时间减少了49倍。这种技术,即LOE-FISH,具有许多优点:无需使用增强型探测器进行检测。此外,我们可以使用微焦耳脉冲激光器,而不是毫焦耳脉冲激光器,这使得能够以兆赫兹的重复频率进行测量,并具备单次测量和实时测量能力。LOE-FISH技术在较低电场值时灵敏度更高。我们的工作是对该原理的一种演示。仅从演示的首批结果中,就能看出LOE-FISH的巨大潜力。

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