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任希锋

博士生导师
教师姓名:任希锋
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职务:量子网络安徽省重点实验室副主任
联系方式:安徽省合肥市金寨路96号中国科学技术大学物质科研楼C805
职称:教授
毕业院校:中国科学技术大学
所属院系:物理学院
学科:物理学    光学工程    
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代表性论文

期刊论文:

  • 15. Nonlinear quantum light source with van der Waals ferroelectric NbOX2 (X = Br, I), Nat. Commun. 17, 8148 (2026).

  • 14. Unveiling Spin and Poynting Dual Textures of an Optical Skyrmionic Tube in Free Space, Phys. Rev. Lett. 136, 223803 (2026).

  • 13. Chip-to-Chip Quantum Photonic Controll-Not Gate Teleportation, Phys. Rev. Lett. 135, 020802 (2025).

  • 12. Polarization entanglement enabled by orthogonally stacked van der Waals NbOCl2 crystals, Nat. Commun. 15, 10461 (2024).

  • 11. Polarization-entangled photon-pair source with van der Waals 3R-WS2 crystal, eLight 4, 16 (2024).

  • 10. Ultrathin quantum light source with van der Waals NbOCl2 crystal,Nature 613, 53–59 (2023).

  • 9. All-optical modulation of quantum states by nonlinear metasurface, Light: Sci. & Appl. 11, 58 (2022).

  • 8. Edge State, Localization Length, and Critical Exponent from Survival Probability in Topological Waveguides,Phys. Rev. Lett. 129, 173601 (2022).

  • 7. Transverse Mode-Encoded Quantum Gate on a Silicon Photonic Chip, Phys. Rev. Lett. 128, 060501 (2022).

  • 6. Strongly Enhanced Second Harmonic Generation in a Thin Film Lithium Niobate Heterostructure Cavity, Phys. Rev. Lett. 127, 153901 (2021).

  • 5. Topologically Protected Valley-Dependent Quantum Photonic Circuits, Phys. Rev. Lett. 126, 230503 (2021). 

  • 4. Supercompact Photonic Quantum Logic Gate on a Silicon Chip, Phys. Rev. Lett. 126, 130501 (2021).

  • 3. Metalens-array-based high-dimensional and multi-photon quantum source, Science 368, 1487-1490 (2020).

  • 2. Generation of multiphoton quantum states on silicon, Light: Sci. & Appl. 8, 41 (2019).

  • 1. On-chip coherent conversion of photonic quantum entanglement between different degrees of freedom, Nat. Commun. 7, 11985 (2016).

邀请综述:

  • 10.新型固体材料中的单光子源:从调控到集成(特邀), 《激光与光电子学进展》 62, 1127002 (2025).

  • 9. Symbiotic evolution of photonics and artificial intelligence: a comprehensive review, Adv. Photon. 7, 024001 (2025).

  • 8. 基于集成光芯片的量子模拟研究进展(特邀综述),《物理学报》 71, 244207 (2022).

  • 7. Silicon photonic devices for scalable quantum information applications, Photon. Res. 10, A135-A153 (2022).

  • 6. 银纳米线波导在量子光学中的应用(特邀综述),《光子学报》51, 0551306 (2022).

  • 5. Progress on Integrated Quantum Photonic Sources with Silicon, Adv. Quantum Technol. 3, 1900058 (2020). 

  • 4. Quantum plasmonics: new opportunity in fundamental and applied photonics, Adv. Opt. and Photon. 10, 703 (2018).

  • 3. Recent progress of the application of surface plasmon polariton in quantum information processing, 《物理学报》14,144202 (2017).

  • 2. One-Dimensional Dielectric/Metallic Hybrid Materials for Photonic Applications, Small 11, 3728-3743 (2015)

  • 1. Silver nanowires for photonics applications, Laser Photonics Rev. 7, 901 (2013).