论文标题
使用连续波光子对来源增强激光雷达性能指标
Enhancing LIDAR performance metrics using continuous-wave photon-pair sources
论文作者
论文摘要
为了增强LIDAR性能指标,例如目标检测灵敏度,噪声弹性和范围的精度,我们利用了连续波泵送的半导体波导产生的光子对内的强时间相关性。通过使用这种非经典源来实现的增强,并将其与基于简单光子计数检测的相应目标检测方案进行了比较。两种方案的性能都通过探针光子传输的估计不确定性和Fisher信息来量化,这是广泛采用的功绩。目标检测实验是用高探针通道丢失(\(\ simeq 1-5 \ times10^{ - 5} \))和可强大的环境噪声强的36 dB(1.64 \ times 10^{ - 5}} \)PW。实验结果表明,增强方案提供的显着优势,在估计不确定性方面,高达26.3 dB的性能高达26.3 dB,这相当于将目标检测时间降低了430或146或146或146(21.6 dB)的倍数。我们还实验证明了在存在强噪声和损失的情况下用连续波泵产生的这些非经典光子对范围,从而实现了受检测器的时间分辨率限制的\(\ of)5 cm距离分辨率。
In order to enhance LIDAR performance metrics such as target detection sensitivity, noise resilience and ranging accuracy, we exploit the strong temporal correlation within the photon pairs generated in continuous-wave pumped semiconductor waveguides. The enhancement attained through the use of such non-classical sources is measured and compared to a corresponding target detection scheme based on simple photon-counting detection. The performances of both schemes are quantified by the estimation uncertainty and Fisher information of the probe photon transmission, which is a widely adopted sensing figure of merit. The target detection experiments are conducted with high probe channel loss (\(\simeq 1-5\times10^{-5}\)) and formidable environment noise up to 36 dB stronger than the detected probe power of \(1.64\times 10^{-5}\) pW. The experimental result shows significant advantages offered by the enhanced scheme with up to 26.3 dB higher performance in terms of estimation uncertainty, which is equivalent to a reduction of target detection time by a factor of 430 or 146 (21.6 dB) times more resilience to noise. We also experimentally demonstrated ranging with these non-classical photon pairs generated with continuous-wave pump in the presence of strong noise and loss, achieving \(\approx\)5 cm distance resolution that is limited by the temporal resolution of the detectors.