Ultrafast optical control of group delay of narrow-band terahertz waves
暂无分享,去创建一个
M. Takeda | F. Miyamaru | T. Nakanishi | M. Kitano | T. Nishida | H. Morita | Y. Nishiyama
[1] Masao Kitano,et al. Plane-wave scattering by self-complementary metasurfaces in terms of electromagnetic duality and Babinet's principle , 2013, 1311.3839.
[2] Ajay Nahata,et al. Terahertz plasmonic waveguides created via 3D printing. , 2013, Optics express.
[3] Lyubov V. Titova,et al. Intense THz pulses down-regulate genes associated with skin cancer and psoriasis: a new therapeutic avenue? , 2013, Scientific Reports.
[4] Joo-Hiuk Son,et al. Terahertz imaging of excised oral cancer at frozen temperature. , 2013, Biomedical optics express.
[5] Tianhua Feng,et al. Tailoring electromagnetically induced transparency for terahertz metamaterials: From diatomic to triatomic structural molecules , 2013 .
[6] Masayoshi Tonouchi,et al. Broadband plasmon induced transparency in terahertz metamaterials , 2013, Nanotechnology.
[7] Masao Kitano,et al. Storage of electromagnetic waves in a metamaterial that mimics electromagnetically induced transparency , 2013, 1304.2443.
[8] Pei Ding,et al. Double Fano resonances due to interplay of electric and magnetic plasmon modes in planar plasmonic structure with high sensing sensitivity. , 2013, Optics express.
[9] Jian Shao,et al. Analogue of electromagnetically induced transparency by doubly degenerate modes in a U-shaped metamaterial , 2013 .
[10] D. R. Chowdhury,et al. Ultrafast manipulation of near field coupling between bright and dark modes in terahertz metamaterial , 2013 .
[11] I. Al-Naib,et al. Low-loss ultra-high-Q dark mode plasmonic Fano metamaterials. , 2012, Optics letters.
[12] Chunying Guan,et al. Highly-dispersive electromagnetic induced transparency in planar symmetric metamaterials. , 2012, Optics express.
[13] Zhen Tian,et al. Electromagnetically induced transparency in terahertz plasmonic metamaterials via dual excitation pathways of the dark mode , 2012 .
[14] S. Maier,et al. Active control of electromagnetically induced transparency analogue in terahertz metamaterials , 2012, Nature Communications.
[15] D. R. Chowdhury,et al. Observing metamaterial induced transparency in individual Fano resonators with broken symmetry , 2011 .
[16] Masao Kitano,et al. Variable group delay in a metamaterial with field-gradient-induced transparency , 2011, 1109.3048.
[17] Zhen Tian,et al. Manipulating the plasmon-induced transparency in terahertz metamaterials. , 2011, Optics express.
[18] H. Ming,et al. Plasmonic EIT-like switching in bright-dark-bright plasmon resonators. , 2011, Optics express.
[19] Thomas Feurer,et al. Terahertz near-field microscopy of complementary planar metamaterials: Babinet's principle. , 2011, Optics express.
[20] Tadao Nagatsuma,et al. A Review on Terahertz Communications Research , 2011 .
[21] G. Shvets,et al. Broadband slow light metamaterial based on a double-continuum Fano resonance. , 2010, Physical review letters.
[22] Kazuhiko Sugiyama,et al. Electromagnetic response of a metamaterial with field-gradient-induced transparency , 2010, 1108.0054.
[23] C. Soukoulis,et al. Large group delay in a microwave metamaterial analog of electromagnetically induced transparency , 2010, 1010.2976.
[24] Shi-ning Zhu,et al. Role of asymmetric environment on the dark mode excitation in metamaterial analogue of electromagnetically-induced transparency. , 2010, Optics express.
[25] Yuehui Lu,et al. Active manipulation of plasmonic electromagnetically-induced transparency based on magnetic plasmon resonance. , 2010, Optics express.
[26] X. Zhang,et al. Enhanced sensing performance by the plasmonic analog of electromagnetically induced transparency in active metamaterials , 2010, 1101.0738.
[27] A. Kristensen,et al. Electromagnetically induced transparency in metamaterials at near-infrared frequency. , 2010, Optics express.
[28] Masayoshi Tonouchi,et al. Terahertz chemical microscope for label-free detection of protein complex , 2010 .
[29] U. Eigenthaler,et al. Planar metamaterial analogue of electromagnetically induced transparency for plasmonic sensing. , 2010, Nano letters.
[30] M. Kafesaki,et al. Dynamic response of metamaterials in the terahertz regime: Blueshift tunability and broadband phase modulation , 2010 .
[31] Shuang Zhang,et al. Ultranarrow coupling-induced transparency bands in hybrid plasmonic systems , 2009 .
[32] Yuehui Lu,et al. Plasmonic electromagnetically-induced transparency in symmetric structures. , 2009, Optics express.
[33] Harald Giessen,et al. Plasmonic analogue of electromagnetically induced transparency at the Drude damping limit. , 2009, Nature materials.
[34] F. Lederer,et al. Analogue of electromagnetically induced transparency in a terahertz metamaterial , 2009, 0907.1937.
[35] N. Vitanov,et al. Electromagnetically induced transparency and slow light in an array of metallic nanoparticles , 2009 .
[36] Lei Zhang,et al. Planar designs for electromagnetically induced transparency in metamaterials. , 2009, Optics express.
[37] Chiko Otani,et al. Terahertz pulsed imaging of frozen biological tissues , 2009, 2009 34th International Conference on Infrared, Millimeter, and Terahertz Waves.
[38] F. Lederer,et al. Coupling between a dark and a bright eigenmode in a terahertz metamaterial , 2009, 0901.0365.
[39] Hu Tao,et al. Planar wallpaper group metamaterials for novel terahertz applications. , 2008, Optics express.
[40] Y. Wang,et al. Plasmon-induced transparency in metamaterials. , 2008, Physical review letters.
[41] C. Soukoulis,et al. Low-loss metamaterials based on classical electromagnetically induced transparency. , 2008, Physical review letters.
[42] N. Zheludev,et al. Metamaterial analog of electromagnetically induced transparency. , 2008, Physical review letters.
[43] N I Zheludev,et al. Sharp trapped-mode resonances in planar metamaterials with a broken structural symmetry. , 2007, Physical review letters.
[44] Willie J Padilla,et al. Complementary planar terahertz metamaterials. , 2007, Optics express.
[45] Masayoshi Tonouchi,et al. Cutting-edge terahertz technology , 2007 .
[46] C. Otani,et al. Terahertz imaging diagnostics of the cancer tissues with chemometrics technique , 2007, 2006 Joint 31st International Conference on Infrared Millimeter Waves and 14th International Conference on Teraherz Electronics.
[47] Masanori Hangyo,et al. Strong optical activity in chiral metamaterials of metal screw hole arrays , 2006 .
[48] Q-Han Park,et al. Shape resonance omni-directional terahertz filters with near-unity transmittance. , 2006, Optics express.
[49] Masahiko Tani,et al. Terahertz Time-Domain Spectroscopy of Solids: A Review , 2005 .
[50] J. Marangos,et al. Electromagnetically induced transparency : Optics in coherent media , 2005 .
[51] M. Tonouchi,et al. Laser terahertz emission system to investigate hydrogen gas sensors , 2005 .
[52] W. R. Tribe,et al. Transmittance of a tunable filter at terahertz frequencies , 2004 .
[53] M. Tani,et al. Noninvasive Inspection of C-4 Explosive in Mails by Terahertz Time-Domain Spectroscopy , 2004 .
[54] K. Kawase,et al. Non-destructive terahertz imaging of illicit drugs using spectral fingerprints. , 2003, Optics express.
[55] E. Linfield,et al. Terahertz Pulsed Imaging of Skin Cancer in the Time and Frequency Domain , 2003, Journal of biological physics.
[56] T. Kondo,et al. Large polarization change in two-dimensional metallic photonic crystals in subterahertz region , 2003 .
[57] A. Litvak,et al. Electromagnetically induced transparency in ensembles of classical oscillators. , 2002, Physical review letters.
[58] A. Bosserhoff,et al. Label-Free Probing of the Binding State of DNA by Time-Domain Terahertz Sensing , 2000 .
[59] G. Gallot,et al. Electro-optic detection of terahertz radiation , 1999 .
[60] Harris,et al. Observation of electromagnetically induced transparency. , 1991, Physical review letters.
[61] Harris,et al. Observation of electromagnetically induced transparency in collisionally broadened lead vapor. , 1991, Physical review letters.
[62] Henry G. Booker,et al. Slot aerials and their relation to complementary wire aerials (Babinet's principle) , 1946 .