陈蕾
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[21] D. Wu, L. Yang, C. Liu, Z. Xu, Y. Liu, Z. Yu, L. Yu, L. Chen, R. Ma, and H. Ye, "Optically active plasmonic metasurfaces based on the hybridization of in-plane coupling and out-of-plane coupling," Nanoscale Research Letters 13, 1–11 (2018).
[22] D. Wu, C. Liu, Z. Xu, Y. Liu, Z. Yu, L. Yu, L. Chen, R. Li, R. Ma, and H. Ye, "The design of ultra-broadband selective near-perfect absorber based on photonic structures to achieve near-ideal daytime radiative cooling," Materials & Design 139, 104–111 (2018).
[23] L. Chen, H. Ye, Y. Liu, D. Wu, R. Ma, and Z. Yu, "Numerical investigations of an optical switch based on a silicon stripe waveguide embedded with vanadium dioxide layers," Photonics Research 5(4), 335–339 (2017).
[24] L. Chen, H. Ye, Y. Liu, Z. Yu, D. Wu, and R. Ma, "Chip-scale nanophotonic switch based on a waveguide-metamaterial coupling mechanism," Optics Letters 42(20), 4199–4202 (2017).
[25] L. Chen, H. Ye, Y. Liu, D. Wu, R. Ma, and Z. Yu, "Numerical investigations of a silicon photonic TE-pass polarizer consisting of alternating copper/silicon nitride layers," IEEE Photonics Journal 9(2), 1–9 (2017).
[26] L. Chen, Y. Liu, and Z. Yu, "Ultra-compact and high-performance silicon photonic TE-pass polarizer based on a Si stripe waveguide coated with multilayer hyperbolic metamaterial cladding," in Conference on Lasers and Electro-Optics (CLEO) (IEEE, 2017), pp. 1–2.
[27] R. Ma, Y. Liu, Z. Yu, L. Chen, D. Wu, and L. Yu, "Bi-Directional Faraday Rotation Selective Enhancement on Embedded Nano-Gratings," IEEE Photonics Technology Letters 29(19), 1615–1618 (2017).
[28] R. Ma, Y. Liu, Z. Yu, L. Chen, D. Wu, and L. Yu, "Polarization insensitive transmission enhanced by staggered metal disk array," Optical Materials 73, 563–569 (2017).
[29] C. Liu, D. Zhang, Y. Liu, D. Wu, L. Chen, R. Ma, Z. Yu, L. Yu, and H. Ye, "Numerical study of an efficient solar absorber consisting of metal nanoparticles," Nanoscale research letters 12, 1–10 (2017).
[30] D. Wu, Y. Liu, L. Yu, Z. Yu, L. Chen, R. Li, R. Ma, C. Liu, J. Zhang, and H. Ye, "Plasmonic metamaterial for electromagnetically induced transparency analogue and ultra-high figure of merit sensor," Scientific reports 7(1), 45210 (2017).
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