Contents
2025
Volume: 8 Issue 1
5 Article(s)

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Research Articles
Ultra-high-Q photonic crystal nanobeam cavity for etchless lithium niobate on insulator (LNOI) platform
Zhi Jiang, Cizhe Fang, Xu Ran, Yu Gao..., Ruiqing Wang, Jianguo Wang, Danyang Yao, Xuetao Gan, Yan Liu, Yue Hao and Genquan Han|Show fewer author(s)
The expansive spectral coverage and superior optical properties of lithium niobate (LN) offer a comprehensive suite of tools for exploring novel functionalities. Achieving high-quality (Q) photonic resonator cavities is crucial for enhancing light-matter interactions. However, this task is challenging as the device per
Opto-Electronic Advances
  • Publication Date: Jan. 23, 2025
  • Vol. 8, Issue 1, 240114-1 (2025)
Streamlined photonic reservoir computer with augmented memory capabilities
Changdi Zhou, Yu Huang, Yigong Yang, Deyu Cai..., Pei Zhou, Kuenyao Lau, Nianqiang Li and Xiaofeng Li|Show fewer author(s)
Photonic platforms are gradually emerging as a promising option to encounter the ever-growing demand for artificial intelligence, among which photonic time-delay reservoir computing (TDRC) is widely anticipated. While such a computing paradigm can only employ a single photonic device as the nonlinear node for data proc
Opto-Electronic Advances
  • Publication Date: Jan. 23, 2025
  • Vol. 8, Issue 1, 240135-1 (2025)
On-chip light control of semiconductor optoelectronic devices using integrated metasurfaces
Cheng-Long Zheng, Pei-Nan Ni, Yi-Yang Xie, and Patrice Genevet
Semiconductor optoelectronics devices, capable of converting electrical power into light or conversely light into electrical power in a compact and highly efficient manner represent one of the most advanced technologies ever developed, which has profoundly reshaped the modern life with a wide range of applications. In
Opto-Electronic Advances
  • Publication Date: Jan. 23, 2025
  • Vol. 8, Issue 1, 240159-1 (2025)
High-frequency enhanced ultrafast compressed active photography
Yizhao Meng, Yu Lu, Pengfei Zhang, Yi Liu..., Fei Yin, Lin Kai, Qing Yang and Feng Chen|Show fewer author(s)
Single-shot ultrafast compressed imaging (UCI) is an effective tool for studying ultrafast dynamics in physics, chemistry, or material science because of its excellent high frame rate and large frame number. However, the random code (R-code) used in traditional UCI will lead to low-frequency noise covering high-frequen
Opto-Electronic Advances
  • Publication Date: Jan. 23, 2025
  • Vol. 8, Issue 1, 240180-1 (2025)