论文标题
使用单孤子微磅的长距离测量
Long distance measurement using single soliton microcomb
论文作者
论文摘要
分散干涉仪(DPI)对基于长距离激光的光频率梳子(OFC)具有重大兴趣,以实现强抗干扰能力和长度相干长度的优点。但是,OFC的重复率与光谱采集系统的分辨率之间的不匹配引起了一个大的死区,这是实际应用的主要障碍。在这里,展示了一个新的DPI激光元,讲述了高重复率索尼顿微型炸弹的强度,对于户外1179 M范围的实验,它达到了27 nm的最小Allan偏差。拟议的计划采用了紧凑,高临界性和无dead区域的长距离范围系统,为Frontier科学研究和高级制造业的新兴应用打开了新的机会。
Dispersive interferometry (DPI) takes a major interest in optical frequency comb (OFC) based long distance laser-based light detection and ranging (LIDAR) for the merits of strong anti-interference ability and long coherent length. However, the mismatch between the repetition rate of OFC and the resolution of optical spectrum acquisition system induces a large dead-zone which is a major obstacle for practical applications. Here, a new DPI LIDAR on the strength of high-repetition-rate soliton microcomb is demonstrated, which reaches a minimum Allan deviation of 27 nm for an outdoor 1179 m ranging experiment. The proposed scheme approaches a compact, high-accuracy, and none-dead-zone long distance ranging system, opening up new opportunities for emerging applications of frontier scientific researches and advanced manufacturing.