Enhanced metrology based on flipping trajectory of cold Rydberg gases
Enhanced metrology based on flipping trajectory of cold Rydberg gases
The dynamical trajectory of a dissipative Rydberg many-body system could be flipped under a microwave field driving, displaying an enhanced sensitivity. This is because the intersection of the folded hysteresis trajectories exhibits a sharp peak near the phase transition, amplifying the response to small changes in the microwave field. Here, we demonstrate an experiment of enhanced metrology through flipping the hysteresis trajectory in a cold atomic system, displaying an approach to improve sensitivity near the gap-closing points. By measuring the intersection points of hysteresis trajectories versus Rabi frequency of the microwave field, we quantify the equivalent sensitivity to be 1.6(5) nV cm-1 Hz-1/2. The measurement is also dependent on the interaction time, optical depth and principal quantum number since the long-range interaction between Rydberg atoms could dramatically change the shape of hysteresis trajectories. The reported results suggest that flipping trajectory features in cold Rydberg many-body systems could advance sensing and metrology applications.
Ya-Jun Wang、Jun Zhang、Zheng-Yuan Zhang、Shi-Yao Shao、Qing Li、Han-Chao Chen、Yu Ma、Tian-Yu Han、Qi-Feng Wang、Jia-Dou Nan、Yi-Ming Yin、Dong-Yang Zhu、Qiao-Qiao Fang、Chao Yu、Xin Liu、Guang-Can Guo、Bang Liu、Li-Hua Zhang、Dong-Sheng Ding、Bao-Sen Shi
物理学
Ya-Jun Wang,Jun Zhang,Zheng-Yuan Zhang,Shi-Yao Shao,Qing Li,Han-Chao Chen,Yu Ma,Tian-Yu Han,Qi-Feng Wang,Jia-Dou Nan,Yi-Ming Yin,Dong-Yang Zhu,Qiao-Qiao Fang,Chao Yu,Xin Liu,Guang-Can Guo,Bang Liu,Li-Hua Zhang,Dong-Sheng Ding,Bao-Sen Shi.Enhanced metrology based on flipping trajectory of cold Rydberg gases[EB/OL].(2025-08-04)[2025-08-13].https://arxiv.org/abs/2409.11035.点此复制
评论