Optical memory for arbitrary perfect Poincaré states in an atomic ensemble

Author:

Zeng Lei,Ye Ying-Hao1,Dong Ming−Xin1,Zhang Wei-Hang,Li En-ZeORCID,Li Da-Chuang1,Ding Dong-Sheng,Shi Bao-Sen

Affiliation:

1. Hefei Normal University

Abstract

Inherent spin angular momentum (SAM) and orbital angular momentum (OAM), which manifest as polarization and spatial degrees of freedom (DOFs) of photons, hold a promise of large capability for applications in classical and quantum information processing. To enable these photonic spin and orbital dynamic properties strongly coupled with each other, Poincaré states have been proposed and offer advantages in data multiplexing, information encryption, precision metrology, and quantum memory. However, since the transverse size of Laguerre–Gaussian beams strongly depends on their topological charge numbers | l |, it is difficult to store asymmetric Poincaré states due to the significantly different light–matter interaction for distinct spatial modes. Here, we experimentally realize the storage of perfect Poincaré states with arbitrary OAM quanta using the perfect optical vortex, in which 121 arbitrarily selected perfect Poincaré states have been stored with high fidelity. The reported work has great prospects in optical communication and quantum networks for dramatically increased encoding flexibility of information.

Funder

National Key Research and Development Program of China

Anhui Initiative in Quantum Information Technologies

National Natural Science Foundation of China

Youth Innovation Promotion Association of the Chinese Academy of Sciences

Anhui Provincial Key Research and Development Project

Anhui Provincial Candidates for academic and technical leaders Foundation

the Major Program of the Education Department of Anhui Province

Publisher

Optica Publishing Group

Subject

Atomic and Molecular Physics, and Optics

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