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News

  • 【2025-05-15】 Multiuser quantum communication network via time-bin-entanglement-based frequency conversion and Bell-state measurement
  • 【2025-05-12】 300 km fully-connected quantum secure direct communication network
  • 【2025-05-09】 Spin Hamiltonian in the modulated momenta of light
  • 【2025-04-27】 Construction of Various Time-varying Hamiltonians on Thin-Film Lithium Niobate Chip
  • 【2025-03-11】 Inverse-designed broadband meta-coupler with high efficiency on thin-film lithium niobate
  • 【2025-02-28】 Weakly Dispersive Band in Synthetic Moir Superlattice Inducing Optimal Compact Comb Generation
  • 【2025-01-10】 Gain-loss induced optical antichiral currents in synthetic frequency dimension
  • 【2024-11-29】 Phase-matching-free second-harmonic generation in an ultrahigh-order standing-wave field
  • 【2024-11-26】 Highly efficient and integrated nonlinear Airy beams generation
  • 【2024-09-26】 Chip-scale nonlinear bandwidth enhancement via birefringent mode hybridization
  • A 15-user quantum secure direct communication network
  • Super-Resolution Nondestructive Detection of Nonlinear Photonic Crystals
  • Direct Visualizing the Spin Hall Effect of Light via Ultrahigh-Order Modes
  • Dense wavelength division multiplexed quantum network
  • Superhigh-Resolution Recognition of Optical Vortex Modes
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    Laboratory of Advanced Photonic Materials and Physics

    Laboratory of Advanced Photonic Materials and Physics was established in 2001 under the support of 1st “985” Project. The aim of the Lab. is to study and develop advanced photonic materials and devices based on new physics, material and technology, which have academics and applications in information and other technologies. The Lab. is a part of “the State Key Laboratory on Fiber Optic Local Area Communication Networks and Advanced Optical Communication Systems” and “The key Laboratory of Ministry of Education on Laser Plasma”. There are 2 professors, 2 distinguished researchers, 1 associate professor, 1 associate researcher, and about 30 Ph.D and Master candidates in the Lab.
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    • LN-based optoelectronic chip

      Next-generation lithium niobate-based optoelectronic chips, quantum nonlinear optics

      【More】
    • Quantum nonlinear optics and devices

      Basic physics research on on-chip photon generation, conversion, manipulation, detection, etc.

      【More】
    • Vacuum UV and Light Field Control

      Vacuum ultraviolet all-solid-state laser, light field control

      【More】
    • Biomedical Photonics and Its Applications

      Super-resolution technology and biological microlasers

      【More】

    Physics Department, Shanghai Jiao Tong University, No. 800, Dongchuan Rd., Shanghai 200240, China Copyright © 2004- 2025