Integrated optoelectronic chip technologies for quantum information processing
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ID: 328808
2026
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Abstract
Abstract In photonic quantum information processing, the generation, manipulation, and detection of photonic quantum states inherently depend on electronic control devices. As a core enabling technology, on-chip optoelectronic hybrid integration drives optical quantum devices toward higher density, lower power consumption, and enhanced stability while pushing the application and performance limits of quantum information processing. This review summarizes the progress in chip-integrated optoelectronic technologies and their applications in key quantum information scenarios-quantum communication, quantum photonic source engineering, optical frequency conversion, and linear optical quantum information processing. We also discuss key challenges and future directions, envisioning optoelectronic integration as the pivotal bridge from lab demonstrations to practical, scalable quantum photonic systems.
| Reference Key |
openalex_W7213318295
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|---|---|
| Authors | Lantian Feng, Kun Wang, Linrunde Tao, Yun Zheng, Xinyu Jia, Nachuan Li, Bohao Zhang, Zhenda Xie, Yan-Xiao Gong, Ping Xu, Jianwei Wang, Xifeng Ren, Qihuang Gong, Shining Zhu, Guangcan Guo |
| Journal | national science review |
| Year | 2026 |
| DOI |
10.1093/nsr/nwag598
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| URL | |
| Keywords | Keywords not found |
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