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◆ Optics express2026-06-15

Noise-resistant biologically correlated biphoton imaging based on a super-bunching light source.

Xiangdong Li, Yuanyuan Li, Xinghui Liu, Xuedong Zhang, Yunrui Song, Ganying Zeng, Zhichun Yang, Jianyong Hu, Ruiyun Chen, Guofeng Zhang, Suotang Jia, Liantuan Xiao, Chengbing Qin

原始摘要(英文原文)· Original abstract
Correlation imaging based on entangled light sources offers potential benefits over classical single-photon imaging (SPI) in noisy environments, but also faces challenges such as low brightness, long integration times, and difficulty imaging biological organisms. Here, we propose noise-resistant biologically correlated biphoton imaging (CPI) based on a super-bunching light source, addressing the challenge of severe signal-to-noise ratio degradation in conventional SPI schemes. Our CPI, based on a super-bunching light source with high brightness, broadband spectrum (400-1100 nm), and strong quantum correlation (g2(0) ∼ 250), delivers high-performance, noise-resistant operation by extracting correlated photon pairs between the reference and signal paths. Experimental results show that under extreme noise conditions (noise-to-signal ratio up to 600), the structural profile in conventional SPI is entirely obscured by noise. In contrast, CPI still clearly resolves the target structure. Quantitative analysis further reveals that, as noise intensity increases, the imaging visibility of CPI can be enhanced by more than two orders of magnitude compared to SPI schemes. This study confirms the exceptional robustness and practical utility of super-bunching light-based correlated imaging in high-noise environments, offering an effective technical approach for high-quality biological observation in complex optical conditions.
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Noise-resistant biologically correlated biphoton imaging based on a super-bunching light source. — 科研速览 Science Skim