Toward heralded single-photon storage via chiral cavity-enhanced spontaneous Raman scattering

C Can Sun (State Key Laboratory of Quantum Optics Technologies and Devices, Institute of Opto-Electronics, Shanxi University 1 , Taiyuan 030006,) Y Yibo Hou (State Key Laboratory of Quantum Optics Technologies and Devices, Institute of Opto-Electronics, Shanxi University 1 , Taiyuan 030006,) X Xiang Chen T Tianyu Wang C Chunyao He (State Key Laboratory of Quantum Optics Technologies and Devices, Institute of Opto-Electronics, Shanxi University 1 , Taiyuan 030006,) Y Yulei Geng (State Key Laboratory of Quantum Optics Technologies and Devices, Institute of Opto-Electronics, Shanxi University 1 , Taiyuan 030006,) Y Yafei Wen (Department of Physics, Taiyuan Normal University 3 , Jinzhong 030619,) S Shujing Li (State Key Laboratory of Agricultural and Forestry Biosecurity, College of Plant Protection, Nanjing Agricultural University) H Hai Wang (Key Lab of Biomass Chemical Engineering of Ministry of Education and College of Chemical and Biological Engineering)

Abstract

We propose a scheme of heralded storages of single photons via spontaneous Raman scattering (SRS) enhanced by a chiral standing-wave cavity, which creates a non-classically correlated pair of a spin wave and a Stokes photon (heralded photon) when a single-photon “write” pulse is applied to an atomic ensemble. In this scheme, to decrease the power of the write pulse for SRS, the write laser and the Stokes fields are aligned to propagate near-collinearly through the atoms. The short storage lifetime remains a challenge in standing-wave cavity-enhanced SRS. To prolong the storage lifetime, we achieve a long-wavelength spin-wave memory by removing the backward-scattering Stokes field from the cavity, which is realized by using non-reciprocal couplings between the Stokes fields and the atoms. In the experiment, the memory lifetime is demonstrated up to ∼100 μs, which is beyond the limitation (∼350 ns) of the storage in the atomic ensembles coupled to standing-wave cavities. We achieve a spin-wave memory for the write pulse containing a mean photon number of ∼4. The quantum correlation of the Stokes-spin-wave pairs is beyond 2, which gives strong evidence of non-classical behavior.

Article Details

Volume / Issue Vol. 126, Issue 20
Published May 19, 2025
ISSN 0003-6951
Publisher American Institute of Physics

Journal Info

Applied Physics Letters

American Institute of Physics

ISSN: 0003-6951 Physical Sciences

Authors (9)

C

Can Sun

State Key Laboratory of Quantum Optics Technologies and Devices, Institute of Opto-Electronics, Shanxi University 1 , Taiyuan 030006,

Y

Yibo Hou

State Key Laboratory of Quantum Optics Technologies and Devices, Institute of Opto-Electronics, Shanxi University 1 , Taiyuan 030006,

X

Xiang Chen

T

Tianyu Wang

C

Chunyao He

State Key Laboratory of Quantum Optics Technologies and Devices, Institute of Opto-Electronics, Shanxi University 1 , Taiyuan 030006,

Y

Yulei Geng

State Key Laboratory of Quantum Optics Technologies and Devices, Institute of Opto-Electronics, Shanxi University 1 , Taiyuan 030006,

Y

Yafei Wen

Department of Physics, Taiyuan Normal University 3 , Jinzhong 030619,

S

Shujing Li

State Key Laboratory of Agricultural and Forestry Biosecurity, College of Plant Protection, Nanjing Agricultural University

H

Hai Wang

Key Lab of Biomass Chemical Engineering of Ministry of Education and College of Chemical and Biological Engineering