Jia Fan, Zhang Zijing, Cen Longzhu, Sun Yanhui, Zhao Yuan
School of Physics, Harbin Institute of Technology, Harbin 150001, China.
Sensors (Basel). 2023 Aug 11;23(16):7118. doi: 10.3390/s23167118.
In laser active detection, detection performance is affected by optical noise, laser interference, and environmental background interference. Conventional methods to filter optical noise take advantage of the differences between signal and noise in wavelength and polarization. Due to the limitations of traditional methods in the physical dimension, noise cannot be completely filtered out. In this manuscript, a new method of noise filtering based on the spatial distribution difference between the quantum orbital angular momentum beam and the background noise is proposed. The use of beams containing quantum orbital angular momentum can make the signal light have a new physical dimension and enrich the information of emitted light. We conduct a complete theoretical analysis and provide a proof-of-principle experiment. The experimental results are in good agreement with the theoretical analysis results, and there is a signal-to-noise ratio improvement of more than five times in laser active detection. Our method meets the urgent needs of laser active detection and can be applied in the field of high-quality target detection.
在激光主动探测中,探测性能会受到光学噪声、激光干扰和环境背景干扰的影响。传统的光学噪声滤波方法利用信号与噪声在波长和偏振方面的差异。由于传统方法在物理维度上的局限性,噪声无法被完全滤除。在本论文中,提出了一种基于量子轨道角动量光束与背景噪声空间分布差异的噪声滤波新方法。使用包含量子轨道角动量的光束可使信号光具有新的物理维度并丰富发射光的信息。我们进行了完整的理论分析并提供了原理验证实验。实验结果与理论分析结果吻合良好,在激光主动探测中,信噪比提高了五倍以上。我们的方法满足了激光主动探测的迫切需求,可应用于高质量目标探测领域。