Nanofocusing beyond the near-field diffraction limit via plasmonic Fano resonance.
暂无分享,去创建一个
Changtao Wang | Zeyu Zhao | Xiangang Luo | Wei Zhang | M. Pu | Honglin Yu | Ling Liu | Maowen Song | Xiangang Luo
[1] E. Abbe. Beiträge zur Theorie des Mikroskops und der mikroskopischen Wahrnehmung , 1873 .
[2] R. W. Christy,et al. Optical Constants of the Noble Metals , 1972 .
[3] Mufei Xiao. A study of resolution limit in optical microscopy: near and far field , 1996 .
[4] J. Pendry,et al. Negative refraction makes a perfect lens , 2000, Physical review letters.
[5] P. Nordlander,et al. A Hybridization Model for the Plasmon Response of Complex Nanostructures , 2003, Science.
[6] Xiangang Luo,et al. Surface plasmon resonant interference nanolithography technique , 2004 .
[7] A. Grbic,et al. Overcoming the diffraction limit with a planar left-handed transmission-line lens. , 2004, Physical review letters.
[8] N. Fang,et al. SubDiffraction-Limited Optical Imaging with a Silver Superlens , 2005, Science.
[9] G. Shvets,et al. Near-Field Microscopy Through a SiC Superlens , 2006, Science.
[10] R. Merlin,et al. Radiationless Electromagnetic Interference: Evanescent-Field Lenses and Perfect Focusing , 2007, Science.
[11] E. Ulin-Avila,et al. Three-dimensional optical metamaterial with a negative refractive index , 2008, Nature.
[12] Anthony Grbic,et al. Near-Field Plates: Subdiffraction Focusing with Patterned Surfaces , 2008, Science.
[13] R. Merlin,et al. Near-Field Focusing Plates and Their Design , 2007, IEEE Transactions on Antennas and Propagation.
[14] G. Eleftheriades,et al. Plasmonic meta-screen for alleviating the trade-offs in the near-field optics. , 2009, Optics express.
[15] R. Gordon. Proposal for superfocusing at visible wavelengths using radiationless interference of a plasmonic array. , 2009, Physical review letters.
[16] Peter Nordlander,et al. The ring: a leitmotif in plasmonics. , 2009, ACS nano.
[17] D P Tsai,et al. Spectral collapse in ensembles of metamolecules. , 2009, Physical review letters.
[18] P. Nordlander,et al. The Fano resonance in plasmonic nanostructures and metamaterials. , 2010, Nature materials.
[19] S. Fan,et al. Combining radiationless interference with evanescent field amplification. , 2010, Optics letters.
[20] Mohsen Rahmani,et al. Subgroup decomposition of plasmonic resonances in hybrid oligomers: modeling the resonance lineshape. , 2012, Nano letters.
[21] Lianshan Yan,et al. Surface Plasmon Polaritons and Its Applications , 2012, IEEE Photonics Journal.
[22] A. Grbic,et al. Generating Evanescent Bessel Beams Using Near-Field Plates , 2012, IEEE Transactions on Antennas and Propagation.
[23] Mark R. Dennis,et al. A super-oscillatory lens optical microscope for subwavelength imaging. , 2012, Nature materials.
[24] Reuven Gordon,et al. Limits for superfocusing with finite evanescent wave amplification. , 2011, Optics letters.
[25] Changtao Wang,et al. Investigation of Fano resonance in planar metamaterial with perturbed periodicity. , 2013, Optics express.
[26] H. Bağcı,et al. A dynamically reconfigurable Fano metamaterial through graphene tuning for switching and sensing applications , 2013, Scientific Reports.
[27] Mohsen Rahmani,et al. Fano resonance in novel plasmonic nanostructures , 2013 .
[28] Bai Cao Pan,et al. Multiple Fano resonances in spoof localized surface plasmons. , 2014, Optics express.
[29] P. Mulvaney,et al. Fano resonances in three-dimensional dual cut-wire pairs. , 2014, Nanoscale.
[30] Beibei Zeng,et al. Rapid and highly sensitive detection using Fano resonances in ultrathin plasmonic nanogratings , 2014 .
[31] Hai-Qing Lin,et al. Plasmonic Fano resonances in metallic nanorod complexes. , 2014, Nanoscale.
[32] M. Pu,et al. Fano resonance induced by mode coupling in all-dielectric nanorod array , 2014 .
[33] Sergey I. Bozhevolnyi,et al. Nanofocusing of electromagnetic radiation , 2013, Nature Photonics.
[34] Abul K. Azad,et al. A graphene based tunable terahertz sensor with double Fano resonances. , 2015, Nanoscale.
[35] Changtao Wang,et al. Ultrabroadband superoscillatory lens composed by plasmonic metasurfaces for subdiffraction light focusing , 2015 .
[36] Fang Li,et al. Far-field imaging beyond diffraction limit using single sensor in combination with a resonant aperture. , 2015, Optics express.
[37] Changtao Wang,et al. Sharp Fano resonance induced by a single layer of nanorods with perturbed periodicity. , 2015, Optics express.
[38] Changtao Wang,et al. Going far beyond the near-field diffraction limit via plasmonic cavity lens with high spatial frequency spectrum off-axis illumination , 2015, Scientific Reports.
[39] Changtao Wang,et al. Fabrication of anisotropically arrayed nano-slots metasurfaces using reflective plasmonic lithography. , 2015, Nanoscale.
[40] Xiaoliang Ma,et al. Catenary optics for achromatic generation of perfect optical angular momentum , 2015, Science Advances.