Lee Chung-Hyun, Kim Yosep, Im Dong-Gil, Kim U-Shin, Tamma Vincenzo, Kim Yoon-Ho
Department of Physics, Pohang University of Science and Technology (POSTECH), Pohang 37673, Korea.
School of Mathematics and Physics, University of Portsmouth, Portsmouth PO1 3QL, United Kingdom.
Phys Rev Lett. 2023 Dec 1;131(22):223602. doi: 10.1103/PhysRevLett.131.223602.
Coherent light detection and ranging (LIDAR) offers exceptional sensitivity and precision in measuring the distance of remote objects by employing first-order interference. However, the ranging capability of coherent LIDAR is principally constrained by the coherence time of the light source determined by the spectral bandwidth. Here, we introduce coherent two-photon LIDAR, which eliminates the range limitation of coherent LIDAR due to the coherence time. Our scheme capitalizes on the counterintuitive phenomenon of two-photon interference of thermal light, in which the second-order interference fringe remains impervious to the short coherence time of the light source determined by the spectral bandwidth. By combining this feature with transverse two-photon interference of thermal light, we demonstrate distance ranging beyond the coherence time without relying on time-domain interference fringes. Moreover, we show that our coherent two-photon LIDAR scheme is robust to turbulence and ambient noise. This work opens up novel applications of two-photon correlation in classical light.
相干光探测与测距(激光雷达)通过利用一阶干涉在测量远程物体距离方面具有出色的灵敏度和精度。然而,相干激光雷达的测距能力主要受由光谱带宽决定的光源相干时间的限制。在此,我们引入相干双光子激光雷达,它消除了由于相干时间导致的相干激光雷达的距离限制。我们的方案利用了热光双光子干涉的反直觉现象,其中二阶干涉条纹不受由光谱带宽决定的光源短相干时间的影响。通过将此特性与热光的横向双光子干涉相结合,我们展示了无需依赖时域干涉条纹即可实现超越相干时间的距离测量。此外,我们表明我们的相干双光子激光雷达方案对湍流和环境噪声具有鲁棒性。这项工作开启了双光子关联在经典光中的新应用。