T. J. Watson Laboratory of Applied Physics, California Institute of Technology, Pasadena, CA 91125, USA.
Science. 2018 Feb 23;359(6378):884-887. doi: 10.1126/science.aao1968.
Laser-based range measurement systems are important in many application areas, including autonomous vehicles, robotics, manufacturing, formation flying of satellites, and basic science. Coherent laser ranging systems using dual-frequency combs provide an unprecedented combination of long range, high precision, and fast update rate. We report dual-comb distance measurement using chip-based soliton microcombs. A single pump laser was used to generate dual-frequency combs within a single microresonator as counterpropagating solitons. We demonstrated time-of-flight measurement with 200-nanometer precision at an averaging time of 500 milliseconds within a range ambiguity of 16 millimeters. Measurements at distances up to 25 meters with much lower precision were also performed. Our chip-based source is an important step toward miniature dual-comb laser ranging systems that are suitable for photonic integration.
基于激光的距离测量系统在许多应用领域都很重要,包括自动驾驶汽车、机器人技术、制造业、卫星编队飞行以及基础科学。使用双频梳的相干激光测距系统提供了前所未有的远距离、高精度和快速更新率的组合。我们报告了使用基于芯片的孤子微梳进行双梳距离测量。单个泵浦激光在单个微谐振器中产生作为反向传播孤子的双频梳。我们在 16 毫米的范围模糊度内以 500 毫秒的平均时间实现了 200 纳米精度的飞行时间测量。还进行了距离达 25 米但精度较低的测量。我们的基于芯片的源是朝着适合光子集成的微型双梳激光测距系统迈出的重要一步。