Single-photon advantage in quantum cryptography beyond QKD

D Daniel A. Vajner K Koray Kaymazlar F Fenja Drauschke L Lucas Rickert M Martin von Helversen H Hanqing Liu S Shulun Li H Haiqiao Ni Z Zhichuan Niu A Anna Pappa T Tobias Heindel

Abstract

Abstract Quantum key distribution (QKD) can be used to establish a secret key between trusted parties. Many practical use-cases in communication networks, however, involve parties who do not trust each other. A fundamental cryptographic building block for such distrustful scenarios is quantum coin flipping, which has been investigated only in few experimental studies to date, all of which used probabilistic quantum light sources imposing fundamental limitations. Here, we experimentally implement a quantum strong coin flipping protocol using single-photon states and demonstrate a quantum advantage compared to both classical realizations and implementations using faint laser pulses. We achieve this by employing a state-of-the-art deterministic quantum dot light source in combination with fast, random polarization-state encoding enabling sufficiently low quantum bit error ratio. By demonstrating a single-photon quantum advantage in a cryptographic primitive beyond QKD, our work represents a major advance towards the implementation of complex cryptographic tasks in a future quantum internet.

Article Details

Volume / Issue Vol. 17, Issue 1
Published February 26, 2026
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (11)

D

Daniel A. Vajner

K

Koray Kaymazlar

F

Fenja Drauschke

L

Lucas Rickert

M

Martin von Helversen

H

Hanqing Liu

S

Shulun Li

H

Haiqiao Ni

Z

Zhichuan Niu

A

Anna Pappa

T

Tobias Heindel