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High-efficiency Weak-trace-free Counterfactual Communication via Quantum Zeno Effect

Quantum Physics 2026-03-20 v2

Abstract

The quantum Zeno effect, which inhibits quantum state evolution via repeated weak measurements, significantly enhances the efficiency of interaction-free measurement (IFM). This fundamental mechanism facilitates high-efficiency counterfactual quantum communication, enabling information delivery without particle transmission through the channel. However, the transmission time of the counterfactual communication requires minutes for bit and suffers the bit error when transmitting an image. Applying the quantum Zeno effect, we experimentally demonstrate high-efficiency weak-trace-free counterfactual communication on a quantum photonic chip, achieving a transmission probability of 74.2 ±\pm 1.6\% for bit 0 and 85.1 ±\pm 1.3\% for bit 1. Furthermore, we successfully transmit our group's logo -- Quanta -- through counterfactual communication, and reduce the time cost from minutes to seconds for bit, with zero bit errors after information processing. Our study provides a promising approach for secure and efficient communication using integrated silicon quantum photonics.

Keywords

Cite

@article{arxiv.2509.01074,
  title  = {High-efficiency Weak-trace-free Counterfactual Communication via Quantum Zeno Effect},
  author = {Tianyi Xing and Anqi Huang and Yizhi Wang and Chao Wu and Yaxuan Wang and Pingyu Zhu and Jiangfang Ding and Dongyang Wang and Yingwen Liu and Xiaogang Qiang and Sheng Ma and Ping Xu and Junjie Wu},
  journal= {arXiv preprint arXiv:2509.01074},
  year   = {2026}
}
R2 v1 2026-07-01T05:14:32.616Z