Integrated photonic platform with high-speed entanglement generation and witnessing

Fuente: arXiv
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Autori principali: Zhang, Gong, Wang, Chao, Goh, Koon Tong, Ng, Si Qi, Ho, Raymond, Semenenko, Henry, Srinivasan, Srinivasan Ashwyn, Wang, Haibo, Chen, Yue, Haw, Jing Yan, Gong, Xiao, Van Campenhout, Joris, Lim, Charles
Natura: Preprint
Pubblicazione: 2025
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author Zhang, Gong
Wang, Chao
Goh, Koon Tong
Ng, Si Qi
Ho, Raymond
Semenenko, Henry
Srinivasan, Srinivasan Ashwyn
Wang, Haibo
Chen, Yue
Haw, Jing Yan
Gong, Xiao
Van Campenhout, Joris
Lim, Charles
author_facet Zhang, Gong
Wang, Chao
Goh, Koon Tong
Ng, Si Qi
Ho, Raymond
Semenenko, Henry
Srinivasan, Srinivasan Ashwyn
Wang, Haibo
Chen, Yue
Haw, Jing Yan
Gong, Xiao
Van Campenhout, Joris
Lim, Charles
contents High-speed generation and efficient entanglement detection on a photonic chip are essential for quantum information applications but hard to achieve due to common photonic chips' material properties and limited component performance. In this work, we experimentally demonstrate entanglement witness on a silicon photonic chip, with multi-rail single-photon entanglement generation based on decoy-state techniques. The detection is based on balanced homodyne detectors on the same photonic chip with a bandwidth of up to 12.5 GHz, which allows room-temperature operation. A loss-equivalent analysis method compensates for optical losses and system noises. Experimental results quantify an entangled state fidelity of 92% in quantum state tomography and a Clauser-Horne-Shimony-Holt (CHSH) violation lower bound of 2.59. These results establish a viable path toward fully integrated, high-bandwidth, room-temperature quantum photonic systems, with potential applications in on-chip quantum optics and quantum random number generation.
format Preprint
id arxiv_https___arxiv_org_abs_2510_04534
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Integrated photonic platform with high-speed entanglement generation and witnessing
Zhang, Gong
Wang, Chao
Goh, Koon Tong
Ng, Si Qi
Ho, Raymond
Semenenko, Henry
Srinivasan, Srinivasan Ashwyn
Wang, Haibo
Chen, Yue
Haw, Jing Yan
Gong, Xiao
Van Campenhout, Joris
Lim, Charles
Quantum Physics
High-speed generation and efficient entanglement detection on a photonic chip are essential for quantum information applications but hard to achieve due to common photonic chips' material properties and limited component performance. In this work, we experimentally demonstrate entanglement witness on a silicon photonic chip, with multi-rail single-photon entanglement generation based on decoy-state techniques. The detection is based on balanced homodyne detectors on the same photonic chip with a bandwidth of up to 12.5 GHz, which allows room-temperature operation. A loss-equivalent analysis method compensates for optical losses and system noises. Experimental results quantify an entangled state fidelity of 92% in quantum state tomography and a Clauser-Horne-Shimony-Holt (CHSH) violation lower bound of 2.59. These results establish a viable path toward fully integrated, high-bandwidth, room-temperature quantum photonic systems, with potential applications in on-chip quantum optics and quantum random number generation.
title Integrated photonic platform with high-speed entanglement generation and witnessing
topic Quantum Physics
url https://arxiv.org/abs/2510.04534