Microwave Space-Time-Modulated Metasurfaces
暂无分享,去创建一个
[1] Sameh Y. Elnaggar,et al. Properties of translation operator and the solution of the eigenvalue and boundary value problems of arbitrary space–time periodic metamaterials , 2021, Royal Society Open Science.
[2] H. Mosallaei,et al. Quasi‐Static and Time‐Modulated Optical Phased Arrays: Beamforming Analysis and Comparative Study , 2021, Advanced Photonics Research.
[3] Tie Jun Cui,et al. Space-Time-Coding Digital Metasurfaces: Principles and Applications , 2021, Research.
[4] Ming Zheng Chen,et al. A wireless communication scheme based on space- and frequency-division multiplexing using digital metasurfaces , 2021 .
[5] G. Eleftheriades,et al. Full-duplex reflective beamsteering metasurface featuring magnetless nonreciprocal amplification , 2021, Nature Communications.
[6] G. Eleftheriades,et al. Programmable nonreciprocal meta-prism , 2020, Scientific Reports.
[7] Zao Yi,et al. Controllable frequency conversion in the coupled time-modulated cavities with phase delay , 2020 .
[8] N. Engheta,et al. Achieving asymmetry and trapping in diffusion with spatiotemporal metamaterials , 2020, Nature Communications.
[9] Harry A. Atwater,et al. Electro-Optically Tunable Multifunctional Metasurfaces. , 2020, ACS nano.
[10] H. Mosallaei,et al. Topological Space‐Time Photonic Transitions in Angular‐Momentum‐Biased Metasurfaces , 2020, Advanced Optical Materials.
[11] Willie J Padilla,et al. Surface-wave-assisted nonreciprocity in spatio-temporally modulated metasurfaces , 2019, Nature Communications.
[12] T. Cui,et al. Breaking Reciprocity with Space‐Time‐Coding Digital Metasurfaces , 2019, Advanced materials.
[13] X. Ni,et al. Nonreciprocal metasurface with space–time phase modulation , 2019, Light: Science & Applications.
[14] H. Atwater,et al. Tunable all-dielectric metasurface for phase modulation of the reflected and transmitted light via permittivity tuning of indium tin oxide , 2019, Nanophotonics.
[15] Shi Jin,et al. Programmable time-domain digital-coding metasurface for non-linear harmonic manipulation and new wireless communication systems , 2018, National science review.
[16] Qiang Cheng,et al. Space-time-coding digital metasurfaces , 2018, Nature Communications.
[17] George V. Eleftheriades,et al. Huygens’ metasurfaces from microwaves to optics: a review , 2018, Nanophotonics.
[18] Houtong Chen,et al. A review of metasurfaces: physics and applications , 2016, Reports on progress in physics. Physical Society.
[19] S. Fan,et al. Dynamic non-reciprocal meta-surfaces with arbitrary phase reconfigurability based on photonic transition in meta-atoms , 2016 .
[20] P. Celli,et al. Low-frequency spatial wave manipulation via phononic crystals with relaxed cell symmetry , 2014 .
[21] Michael R. Watts,et al. Large-scale nanophotonic phased array , 2013, Nature.
[22] A. Kildishev,et al. Broadband Light Bending with Plasmonic Nanoantennas , 2012, Science.
[23] N. Yu,et al. Light Propagation with Phase Discontinuities: Generalized Laws of Reflection and Refraction , 2011, Science.
[24] Edward A. Watson,et al. Optical phased array technology , 1996, Proc. IEEE.
[25] Theodor Tamir,et al. Wave propagation and dispersion in space-time periodic media , 1972 .
[26] P. K. Tien,et al. Parametric Amplification and Frequency Mixing in Propagating Circuits , 1958 .
[27] A. Cullen,et al. A Travelling-Wave Parametric Amplifier , 1958, Nature.