报告时间:7月8日上午 9:45-11:30
报告地点:东南大学九龙湖校区信息大楼1234会议室
摘要:
激光陀螺的测量原理源于1913年发现的Sagnac效应:环形光路中相向传播的两束光因载体转动产生频率差,该频率差与角速度成正比。1960年激光器诞生后,激光陀螺历经六十余年发展,凭借高精度、抗冲击、全固态等优势,成为中高精度惯性导航系统的核心器件。除此之外,激光陀螺在大型科学装置及对地球运动观测领域同样发挥重要作用:大型激光陀螺可直接锚固于地表,通过测量地球自转信号实现高频世界时解算、旋转地震波监测和地球物理研究,是国家时空基准体系建设的关键战略支撑。
报告人毕业于国防科技大学激光陀螺团队,长期从事激光物理、激光陀螺技术相关领域研究。本报告将围绕大型激光陀螺科学装置及商业激光陀螺仪的工程与物理的前沿进展,从“大”与“小”两条主线展开。在“大”的维度上,介绍我国首台微晶玻璃光胶组合架构的大型激光陀螺NUDT-MRLG550,成功观测地球自转信号,为世界时测量提供全新手段。在“小”的维度上,介绍基于手性自发对称性破缺的新型激光陀螺方案(Nature 654, 2–9 (2026)),利用单同位素Ne气体的强非线性耦合,在无需外部偏频元件条件下突破闭锁效应,开环偏置稳定性达2.2×10⁻² (°)/h,为全固态芯片化激光陀螺开辟新路径。大型陀螺以更大面积换取更高灵敏度,服务基础科学;手性陀螺以非线性操控取代外部组件,推动产业集成。二者共同构成激光陀螺从工程到物理的新前沿。
报告人简介:
毛元昊,陆军工程大学讲师,主要研究方向为激光物理、原子物理、激光陀螺技术。博士毕业于国防科大前沿交叉学科学院光电工程系,以主要完成人设计了我国首台微晶架构大型激光陀螺NUDT-MRLG550,原创性的发现并提出“手性激光陀螺”概念;拥有发明专利2项,以第一/通讯作者在Nature、Nature Nanotechnology、Light: Science & Applications、Science Bulletin等期刊发表学术论文十余篇,在《解放军报》、中国激光杂志社等平台发表科普文章20余篇;获得中国激光首届“青衿奖”,湖南省光学科技进展一等奖。
Dr. Yuanhao Mao is a Lecturer at the Army Engineering University of PLA. His research interests include laser physics, atomic physics, and laser gyroscope technology. He received his Ph.D. from the College of Advanced Interdisciplinary Studies, National University of Defense Technology, under the supervision of renowned experts in the field. He was the principal designer of NUDT‑MRLG550, China’s first large‑scale laser gyroscope based on a glass‑ceramic architecture, and originally conceived the concept of “chiral laser gyroscopes,” with the work published in Nature. He holds two invention patents, has authored or co‑authored more than ten peer‑reviewed papers in journals including Nature, Nature Nanotechnology, Light: Science & Applications, and Science Bulletin as first/corresponding author, and has published over 20 popular science articles in platforms such as PLA Daily and the Chinese Laser Press.
