arXiv · 2006.16467
Observation of $\mathcal{PT}$-symmetric quantum coherence in a single ion system
Abstract
Parity-time($\mathcal{PT}$)-symmetric systems, featuring real eigenvalues despite its non-Hermitian nature, have been widely utilized to achieve exotic functionalities in the classical realm, such as loss-induced transparency or lasing revival. By approaching the exceptional point (EP) or the coalescences of both eigenvalues and eigenstates, unconventional effects are also expected to emerge in pure quantum $\mathcal{PT}$ devices. Here, we report experimental evidences of spontaneous $\mathcal{PT}$ symmetry breaking in a single cold $^{40}\mathrm{Ca}^{+}$ ion, and more importantly, a counterintuitive effect of perfect quantum coherence occurring at the EP. Excellent agreement between experimental results and theoretical predictions is identified. In view of the versatile role of cold ions in building quantum memory or processor, our experiment provides a new platform to explore and utilize pure quantum EP effects, with diverse applications in quantum engineering of trapped ions.
Explore related subjects
Keep this discovery
Wei-Chen Wang, Yan-Li Zhou, Hui-Lai Zhang, Jie Zhang, Man-Chao Zhang, Yi Xie, Chun-Wang Wu, Ting Chen, Bao-Quan Ou, Wei Wu, Hui Jing, Pin-xing Chen. 2020-06-30. Observation of $\mathcal{PT}$-symmetric quantum coherence in a single ion system. https://doi.org/10.1103/physreva.103.l020201
Cite the original work for its findings. Save a collection to share your selection of sources.