论文标题

通过刺激的四波混合过程检测红外光

Detection of infrared light through stimulated four-wave mixing process

论文作者

Zhang, Wei-Hang, Peng, Jing-Yuan, Li, En-Ze, Ye, Ying-Hao, Zeng, Lei, Ding, Dong-Sheng, Shi, Bao-Sen

论文摘要

红外光学测量在行业和科学中具有广泛的应用,但是与可见的光检测器相比,红外光检测器遭受高成本和劣质性能。四波混合(FWM)过程可以通过检测相关的可见光在红外范围内检测。我们在热$^{85} $ rb原子蒸气电池中实验研究了刺激的FWM工艺,其中弱红外信号激光器($ 1530〜 $ nm)诱导FWM工艺,并在780〜 $ nm中被诱导并转换为强FWM光,可以更轻松地检测到后者。我们通过研究输入激光器对生成的FWM光的频率的依赖性,发现了优化的单光子和两光子的失谐。更重要的是,随着信号强度的降低,功率增益迅速增加,这与我们的理论分析一致。结果,以$ 0.1〜μ $ W的信号激光功率的信号激光功率,检测到的光子数量增加了250倍。最后,我们通过探索我们刺激的FWM过程的响应率在频域中的宽带中起作用。

Infrared optical measurement has a wide range of applications in industry and science, but infrared light detectors suffer from high costs and inferior performance than visible light detectors. Four-wave mixing (FWM) process allows detection in the infrared range by detecting correlated visible light. We experimentally investigate the stimulated FWM process in a hot $^{85}$Rb atomic vapor cell, in which a weak infrared signal laser at $1530~$nm induces the FWM process and is amplified and converted into a strong FWM light at $780~$nm, the latter can be detected more easily. We find the optimized single- and two-photon detunings by studying the dependence of the frequency of input laser on the generated FWM light. What's more, the power gain increases rapidly as the signal intensity decreases, which is consistent with our theoretical analysis. As a result, the power gain can reach up to 500 at a signal laser power of $0.1~μ$W and the number of detected photons increased by a factor of 250. Finally, we experimentally prove that our amplification process can work in a broad band in the frequency domain by exploring the response rate of our stimulated FWM process.

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