Experimental entanglement swapping through single-photon χ(2) nonlinearity

Y Yoshiaki Tsujimoto K Kentaro Wakui T Tadashi Kishimoto S Shigehito Miki M Masahiro Yabuno H Hirotaka Terai M Mikio Fujiwara G Go Kato

Abstract

Abstract In photonic quantum information processing, quantum operations using nonlinear photon-photon interactions are vital for implementing two-qubit gates and enabling faithful entanglement swapping. However, due to the weak interaction between single photons, the all-photonic realization of such quantum operations has remained out of reach so far. Herein, we demonstrate an entanglement swapping using sum-frequency generation between single photons in a χ (2)-nonlinear optical waveguide. We show that a high signal-to-noise ratio (SNR), stable sum-frequency-generation-based entanglement heralder with an ultralow-dark-count superconducting single-photon detector can satisfy the unprecedented SNR requirement indispensable for the swapping protocol. Furthermore, the system clock is enhanced by utilizing ultrafast telecom entangled photon-pair sources that operate in the GHz range. Our results confirm a lower bound 0.770(76) for the swapped state’s fidelity, surpassing the classical limit of 0.5 successfully. Our findings highlight the strong potential of broadband all-single-photonic nonlinear interactions for further sophistication in long-distance quantum communication and photonic quantum computation.

Article Details

Volume / Issue Vol. 16, Issue 1
Published October 07, 2025
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (8)

Y

Yoshiaki Tsujimoto

K

Kentaro Wakui

T

Tadashi Kishimoto

S

Shigehito Miki

M

Masahiro Yabuno

H

Hirotaka Terai

M

Mikio Fujiwara

G

Go Kato