Design of beam deflector, splitters, wave plates and metalens using photonic elements with dielectric metasurface
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Tingdi Liao | Xudong Cui | Qing Zhang | Maozhong Li | T. Liao | X. Cui | Qing Zhang | Maozhong Li
[1] R. Blanchard,et al. Aberration-free ultrathin flat lenses and axicons at telecom wavelengths based on plasmonic metasurfaces. , 2012, Nano letters.
[2] J. Valentine,et al. Dielectric meta-reflectarray for broadband linear polarization conversion and optical vortex generation. , 2014, Nano letters.
[3] Seyedeh Mahsa Kamali,et al. Multiwavelength polarization insensitive lenses based on dielectric metasurfaces with meta-molecules , 2016, 1601.05847.
[4] Bala Pesala,et al. A novel ultra-low loss hollow-core waveguide using subwavelength high-contrast gratings. , 2009, Optics express.
[5] Shin-Tson Wu,et al. Broadband circular polarizer using stacked chiral polymer films. , 2007, Optics express.
[6] Guoxing Zheng,et al. Ultracompact high-efficiency polarising beam splitter based on silicon nanobrick arrays. , 2016, Optics express.
[7] Federico Capasso,et al. Broadband high-efficiency dielectric metasurfaces for the visible spectrum , 2016, Proceedings of the National Academy of Sciences.
[8] Y. Fainman,et al. Engineering space-variant inhomogeneous media for polarization control. , 2004, Optics letters.
[9] L. Verslegers,et al. Planar lenses based on nanoscale slit arrays in a metallic film , 2009, 2009 Conference on Lasers and Electro-Optics and 2009 Conference on Quantum electronics and Laser Science Conference.
[10] R. Shelby,et al. Experimental Verification of a Negative Index of Refraction , 2001, Science.
[11] Andrea Alù,et al. Gradient Nonlinear Pancharatnam-Berry Metasurfaces. , 2015, Physical review letters.
[12] Jianguo Tian,et al. Dynamically Tunable Broadband Infrared Anomalous Refraction Based on Graphene Metasurfaces , 2015 .
[13] Biao Yang,et al. Design of ultrathin plasmonic quarter-wave plate based on period coupling. , 2013, Optics letters.
[14] J. Pendry,et al. Three-Dimensional Invisibility Cloak at Optical Wavelengths , 2010, Science.
[15] David R. Smith,et al. Metamaterial Electromagnetic Cloak at Microwave Frequencies , 2006, Science.
[16] N. Fang,et al. SubDiffraction-Limited Optical Imaging with a Silver Superlens , 2005, Science.
[17] Tianjing Guo,et al. Broadband polarizers based on graphene metasurfaces. , 2016, Optics letters.
[18] Wei Ting Chen,et al. Super-Dispersive Off-Axis Meta-Lenses for Compact High Resolution Spectroscopy. , 2016, Nano letters.
[19] X. Zhang,et al. Dielectric Optical Cloak , 2009, 0904.3602.
[20] Wen Liu,et al. Broadband polarizing beam splitter with an embedded metal-wire nanograting. , 2005, Optics letters.
[21] K. Malloy,et al. Experimental demonstration of near-infrared negative-index metamaterials. , 2005, Physical review letters.
[22] Q. Zhan,et al. Optical characterization of wiregrid micropolarizers designed for infrared imaging polarimetry. , 2008, Optics letters.
[23] Derek Abbott,et al. Terahertz Magnetic Mirror Realized with Dielectric Resonator Antennas , 2015, Advanced materials.
[24] Jingbo Sun,et al. High-Efficiency All-Dielectric Metasurfaces for Ultracompact Beam Manipulation in Transmission Mode. , 2015, Nano letters.
[25] A. Kildishev,et al. Broadband Light Bending with Plasmonic Nanoantennas , 2012, Science.
[26] A. Kildishev,et al. Planar Photonics with Metasurfaces , 2013, Science.
[27] Shuangchun Wen,et al. Giant photonic spin Hall effect in momentum space in a structured metamaterial with spatially varying birefringence , 2015, Light: Science & Applications.
[28] V. Gruev,et al. CCD polarization imaging sensor with aluminum nanowire optical filters. , 2010, Optics express.
[29] Nader Engheta,et al. Tunneling of electromagnetic energy through subwavelength channels and bends using epsilon-near-zero materials. , 2006, Physical review letters.
[30] P. R. West,et al. All-dielectric Subwavelength Metasurface Focusing Lens References and Links , 2022 .
[31] Shuangchun Wen,et al. Realization of Tunable Photonic Spin Hall Effect by Tailoring the Pancharatnam-Berry Phase , 2013, Scientific Reports.
[32] Federico Capasso,et al. Achromatic Metasurface Lens at Telecommunication Wavelengths. , 2015, Nano letters.
[33] Xueqin Huang,et al. Dirac cones induced by accidental degeneracy in photonic crystals and zero-refractive-index materials. , 2011, Nature materials.
[34] J. Pendry,et al. Negative refraction makes a perfect lens , 2000, Physical review letters.
[35] Seyedeh Mahsa Kamali,et al. Highly tunable elastic dielectric metasurface lenses , 2016, 1604.03597.
[36] G. Shvets,et al. Near-Field Microscopy Through a SiC Superlens , 2006, Science.
[37] Guofan Jin,et al. Dispersionless phase discontinuities for controlling light propagation. , 2012, Nano letters.
[38] C. Chang-Hasnain,et al. A surface-emitting laser incorporating a high-index-contrast subwavelength grating , 2007 .
[39] G. Bartal,et al. An optical cloak made of dielectrics. , 2009, Nature materials.
[40] Highly tunable elastic dielectric metasurface lenses , 2016 .
[41] Alessandro Salandrino,et al. Epsilon-near-zero metamaterials and electromagnetic sources: Tailoring the radiation phase pattern , 2007 .
[42] N. Zheludev,et al. Nanohole array as a lens. , 2008, Nano letters.
[43] Jeremy B. Wright,et al. Optical magnetic mirrors without metals , 2014, 1403.1308.
[44] Erez Hasman,et al. Dielectric gradient metasurface optical elements , 2014, Science.
[45] F. Capasso,et al. Multispectral Chiral Imaging with a Metalens. , 2016, Nano letters.
[46] David R. Smith,et al. An Overview of the Theory and Applications of Metasurfaces: The Two-Dimensional Equivalents of Metamaterials , 2012, IEEE Antennas and Propagation Magazine.
[47] Zhaowei Liu,et al. Far-Field Optical Hyperlens Magnifying Sub-Diffraction-Limited Objects , 2007, Science.
[48] N. Yu,et al. Flat optics with designer metasurfaces. , 2014, Nature materials.
[49] G. Jellison,et al. Parameterization of the optical functions of amorphous materials in the interband region , 1996 .
[50] Guoxing Zheng,et al. Metasurface holograms reaching 80% efficiency. , 2015, Nature nanotechnology.
[51] P. Genevet,et al. Multiwavelength achromatic metasurfaces by dispersive phase compensation , 2014, Science.
[52] W. T. Chen,et al. Metalenses at visible wavelengths: Diffraction-limited focusing and subwavelength resolution imaging , 2016, Science.
[53] A. Arbabi,et al. Dielectric metasurfaces for complete control of phase and polarization with subwavelength spatial resolution and high transmission. , 2014, Nature nanotechnology.
[54] Andrea Alù,et al. Manipulating light polarization with ultrathin plasmonic metasurfaces , 2011 .
[55] E Hasman,et al. Pancharatnam--Berry phase in space-variant polarization-state manipulations with subwavelength gratings. , 2001, Optics letters.
[56] Shulin Sun,et al. Gradient-index meta-surfaces as a bridge linking propagating waves and surface waves. , 2012, Nature materials.
[57] M. Sinclair,et al. Realizing optical magnetism from dielectric metamaterials. , 2012, Physical review letters.
[58] Junjie Li,et al. High‐Performance Broadband Circularly Polarized Beam Deflector by Mirror Effect of Multinanorod Metasurfaces , 2015 .
[59] N. Yu,et al. Light Propagation with Phase Discontinuities: Generalized Laws of Reflection and Refraction , 2011, Science.
[60] Janos Perczel,et al. Visible-frequency hyperbolic metasurface , 2015, Nature.
[61] A. Arbabi,et al. Subwavelength-thick lenses with high numerical apertures and large efficiency based on high-contrast transmitarrays , 2014, Nature Communications.
[62] R. Schnabel,et al. Three-port beam splitters-combiners for interferometer applications. , 2006, Optics letters.
[63] Vladimir M. Shalaev,et al. Ultra-thin, planar, Babinet-inverted plasmonic metalenses , 2013, Light: Science & Applications.