English

Demonstration of quantum-digital payments

Quantum Physics 2024-01-09 v2 Cryptography and Security

Abstract

Digital payments have replaced physical banknotes in many aspects of our daily lives. Similarly to banknotes, they should be easy to use, unique, tamper-resistant and untraceable, but additionally withstand digital attackers and data breaches. Current technology substitutes customers' sensitive data by randomized tokens, and secures the payment's uniqueness with a cryptographic function, called a cryptogram. However, computationally powerful attacks violate the security of these functions. Quantum technology comes with the potential to protect even against infinite computational power. Here, we show how quantum light can secure daily digital payments by generating inherently unforgeable quantum cryptograms. We implement the scheme over an urban optical fiber link, and show its robustness to noise and loss-dependent attacks. Unlike previously proposed protocols, our solution does not depend on long-term quantum storage or trusted agents and authenticated channels. It is practical with near-term technology and may herald an era of quantum-enabled security.

Keywords

Cite

@article{arxiv.2305.14504,
  title  = {Demonstration of quantum-digital payments},
  author = {Peter Schiansky and Julia Kalb and Esther Sztatecsny and Marie-Christine Roehsner and Tobias Guggemos and Alessandro Trenti and Mathieu Bozzio and Philip Walther},
  journal= {arXiv preprint arXiv:2305.14504},
  year   = {2024}
}

Comments

Data and supplementary material will be made openly available upon publication

R2 v1 2026-06-28T10:43:39.652Z