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Articles

Dispersion and Reflection Properties of Artificial Media Formed By Regular Lattices of Ideally Conducting Wires

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Pages 1153-1170 | Published online: 03 Apr 2012

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Rustam Balafendiev, Constantin Simovski, Alexander J. Millar & Pavel Belov. (2022) Wire metamaterial filled metallic resonators. Physical Review B 106:7.
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Aleksandra A. Grigoreva, Andrey V. Tyukhtin, Sergey N. Galyamin & Tatiana Yu Alekhina. (2022) Energy loss reduction of a charge moving through an anisotropic plasma-like medium. Radiation Physics and Chemistry 192, pages 109907.
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Zhao-Lin Liao, Wei-Min Deng, Ze-Liang Xiang, Wen-Jie Chen  & Jian-Wen Dong . (2022) Topological Engineering of the Iso-Frequency Contours in Connection-Type Metamaterials. Frontiers in Physics 10.
Crossref
Michael Kreiczer & Yakir Hadad. (2021) Wave Analysis and Homogenization of a Spatiotemporally Modulated Wire Medium. Physical Review Applied 16:5.
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Fatima Z. Goffi, Andrii Khrabustovskyi, Ramakrishna Venkitakrishnan, Carsten Rockstuhl & Michael Plum. (2021) Higher order constitutive relations and interface conditions for metamaterials with strong spatial dispersion. Physics Letters A 412, pages 127570.
Crossref
Y. M. Jia, R. Yang, X. S. Zhu & S. Y. Yan. (2021) Bi-functional metamaterial quadrilateral array with non-interfering anisotropy. EPL (Europhysics Letters) 135:2, pages 24005.
Crossref
Anand K. Verma. 2021. Introduction to Modern Planar Transmission Lines. Introduction to Modern Planar Transmission Lines 785 831 .
Simon Yves, Geoffroy Lerosey & Fabrice Lemoult. (2021) Inducing topology in a wire medium based metamaterial [Invited]. Optical Materials Express 11:3, pages 821.
Crossref
Paul Kinsler. (2021) A new introduction to spatial dispersion: Reimagining the basic concepts. Photonics and Nanostructures - Fundamentals and Applications 43, pages 100897.
Crossref
Praveen Kumar, Tanweer Ali & M. M. Manohara Pai. (2021) Electromagnetic Metamaterials: A New Paradigm of Antenna Design. IEEE Access 9, pages 18722-18751.
Crossref
Andrew D.M. Charles, Andrew N. Rider, Sonya A. Brown & Chun H. Wang. (2021) Multifunctional magneto-polymer matrix composites for electromagnetic interference suppression, sensors and actuators. Progress in Materials Science 115, pages 100705.
Crossref
Sylvain Lannebère, Tiago A. Morgado & Mário G. Silveirinha. (2020) First principles homogenization of periodic metamaterials and application to wire media. Comptes Rendus. Physique 21:4-5, pages 367-388.
Crossref
Wei Du, Jiang Yang, Sen Zhang, Naeem Iqbal, Yongdi Dang, Jian-Bing Xu & Yungui Ma. (2020) Super-Planckian near-field heat transfer between hyperbolic metamaterials. Nano Energy 78, pages 105264.
Crossref
Z. A. Awan, Hassan Ullah, Ahsan Ullah & Afshan Ashraf. (2020) Effective parameters of a metamaterial composed of dielectric coated conducting cylindrical rods. International Journal of Microwave and Wireless Technologies 12:8, pages 797-808.
Crossref
P.A. Spring, T. Tsunoda, B. Vlastakis & P.J. Leek. (2020) Modeling Enclosures for Large-Scale Superconducting Quantum Circuits. Physical Review Applied 14:2.
Crossref
Jonathan Gratus, Martin W. McCall & Paul Kinsler. (2020) Electromagnetism, axions, and topology: A first-order operator approach to constitutive responses provides greater freedom. Physical Review A 101:4.
Crossref
Purushothaman Narasimhan, Sahil Jain, Nikita Gurjar, Niraj Kumar & Sanjay Kumar Ghosh. (2020) Design of Thin Wire Metamaterial-Based Interaction Structure for Backward Wave Generation. IEEE Transactions on Electron Devices 67:3, pages 1227-1233.
Crossref
Pavlo Robulets, Dmytro Vovchuk, Mykola Khobzei, Yevhenia Derevesnikova, Mychailo Apostolyuk & Leonid Politanskyi. (2020) Multiple Harmonic Signal Transfer Using Wire Media Structure. Multiple Harmonic Signal Transfer Using Wire Media Structure.
Z. A. Awan. (2019) Surface impedance properties of a wire grid embedded in a chiral medium. International Journal of Microwave and Wireless Technologies 12:1, pages 58-65.
Crossref
Larissa V. Panina. 2020. Magnetic Nano- and Microwires. Magnetic Nano- and Microwires 889 917 .
M V Davidovich. (2019) Hyperbolic metamaterials: production, properties, applications, and prospects. Physics-Uspekhi 62:12, pages 1173-1207.
Crossref
S. Metais, G. Lerosey & F. Lemoult. (2019) Multiple scattering enabled superdirectivity from a subwavelength ensemble of resonators. Physical Review B 100:12.
Crossref
Z. A. Awan. (2019) Reflection characteristics of a parallel wire grid embedded in a general bi-isotropic medium. Applied Optics 58:18, pages 5098.
Crossref
Sergey N. Galyamin, Viktor V. Vorobev & Andrei Benediktovitch. (2019) Radiation field of an ideal thin Gaussian bunch moving in a periodic conducting wire structure. Physical Review Accelerators and Beams 22:4.
Crossref
Mikhail Khodzitsky, Anna V. Vozianova, Egor Litvinov, Petr Demchenko & Elizaveta Sheklanova. (2018) Epsilon-near-zero copper-dielectric composite for terahertz frequency range. Epsilon-near-zero copper-dielectric composite for terahertz frequency range.
Leonid N. Butko, Anton P. Anzulevich, Igor V. Bychkov, Dmitriy A. Pavlov & Sergey G. Moiseev. (2018) Negative group velocity waves in rectilinear thin wires array. Journal of Physics: Conference Series 1092, pages 012016.
Crossref
M. V. Davidovich. (2018) Hyperbolic Medium of Finite-Length Wires. Journal of Experimental and Theoretical Physics 127:1, pages 1-19.
Crossref
Pumipong Duangtang & Rangsan Wongsan. (2018) Wire Medium Structure for Gain Enhancement of Conical Horn Antenna. Wire Medium Structure for Gain Enhancement of Conical Horn Antenna.
Hafssaa Latioui & Mário G. Silveirinha. (2017) Light tunneling anomaly in interlaced metallic wire meshes. Physical Review B 96:19.
Crossref
Sergei A Tretyakov. (2017) Complex-media electromagnetics and metamaterials. Journal of Optics 19:8, pages 084006.
Crossref
Simon Fleming, Alessio Stefani, Xiaoli Tang, Alexander Argyros, Daniel Kemsley, James Cordi & Richard Lwin. (2017) Tunable metamaterials fabricated by fiber drawing. Journal of the Optical Society of America B 34:7, pages D81.
Crossref
A. A. Bogdanov, M. A. Gorlach, M. Song, A. P. Slobozhanyuk & P. A. Belov. (2017) Nonlocal homogenization of coated wire medium. Nonlocal homogenization of coated wire medium.
Iñigo Liberal & Nader Engheta. (2017) Near-zero refractive index photonics. Nature Photonics 11:3, pages 149-158.
Crossref
J. Scott Brownless, Björn C. P. Sturmberg, Alexander Argyros, Boris T. Kuhlmey & C. Martijn de Sterke. (2017) Dispersion control in coated wire media slabs. Journal of the Optical Society of America B 34:2, pages 472.
Crossref
Praful Ranjan, Mahesh Kumar Aghwariya, Purnendu Shekhar Pandey & N. Prasanthi. 2017. Proceeding of International Conference on Intelligent Communication, Control and Devices. Proceeding of International Conference on Intelligent Communication, Control and Devices 471 477 .
Didier Felbacq, Frédéric Zolla, Andrés Nicolet & Guy Bouchitté. 2016. Metamaterials Modeling and Design. Metamaterials Modeling and Design 265 290 .
J B Pendry. (2016) Low frequency plasmons in thin-wire structures: a commentary. Journal of Physics: Condensed Matter 28:48, pages 481002.
Crossref
Maxim A. Gorlach, Mingzhao Song, Alexey P. Slobozhanyuk, Andrey A. Bogdanov & Pavel A. Belov. (2016) Topological transition in coated wire medium. physica status solidi (RRL) - Rapid Research Letters 10:12, pages 900-904.
Crossref
Hafssaa Latioui & Mário G. Silveirinha. (2016) Near-field transport by a bent multi-wire endoscope. Journal of Applied Physics 120:6.
Crossref
Pumipong Duangtang, Piyaporn Mesawad & Rangsan Wongsan. (2016) Creating a Gain Enhancement Technique for a Conical Horn Antenna by Adding a Wire Medium Structure at the Aperture. Journal of electromagnetic engineering and science 16:2, pages 134-142.
Crossref
Baocheng Zhu, Shiwei Tang & Lei Zhou. (2016) Effective medium theory for subwavelength cylinder arrays. EPL (Europhysics Letters) 113:4, pages 48002.
Crossref
Ilker Karakasoglu & Shanhui Fan. (2016) Controlling the electrostatic Coulomb interaction using metamaterials. Physical Review B 93:7.
Crossref
Satoshi Ishii & Evgenii Narimanov. (2015) Non-local Optical Topological Transitions and Critical States in Electromagnetic Metamaterials. Scientific Reports 5:1.
Crossref
Juliano G. Hayashi, Simon Fleming, Boris T. Kuhlmey & Alexander Argyros. (2015) Metal selection for wire array metamaterials for infrared frequencies. Optics Express 23:23, pages 29867.
Crossref
D. Bychanok, A. Plyushch, P. Kuzhir, J. Macutkevic, M. Letellier, A. Szczurek, V. Fierro & A. Celzard. (2015) Tannin-based carbon foams in microwave frequency range: Toward fully carbon photonic crystal. Tannin-based carbon foams in microwave frequency range: Toward fully carbon photonic crystal.
D. Tihon, C. Craeye, C. Guclu, F. Capolino & S. Withington. (2015) Orthogonality properties of eigenmodes inside z-invariant periodic structures. Orthogonality properties of eigenmodes inside z-invariant periodic structures.
D. Bychanok, A. Plyushch, G. Gorokhov, V. Skadorov, P. Kuzhir, S. Maksimenko, J. Macutkevic, A. Ortona, L. Ferrari, E. Rezaei, A. Szczurek, V. Fierro & A. Celzard. (2015) Electromagnetic properties of periodic carbon architectures at high frequencies. Electromagnetic properties of periodic carbon architectures at high frequencies.
J. Scott Brownless, Björn C. P. Sturmberg, Alexander Argyros, Boris T. Kuhlmey & C. Martijn de Sterke. (2015) Guided modes of a wire medium slab: Comparison of effective medium approaches with exact calculations. Physical Review B 91:15.
Crossref
Didier Felbacq. (2015) Impedance Operator Description of a Metasurface with Electric and Magnetic Dipoles. Mathematical Problems in Engineering 2015, pages 1-5.
Crossref
L.V. Panina & D.P. Makhnovskiy. 2015. Magnetic Nano- and Microwires. Magnetic Nano- and Microwires 525 544 .
Maxim A. Gorlach & Pavel A. Belov. (2014) Effect of spatial dispersion on the topological transition in metamaterials. Physical Review B 90:11.
Crossref
Zhun Yang, Wei Song & Xin Qing Sheng. (2014) An Effective Model for Wire Medium Based on the 4th Order Dispersion Equation. Advanced Materials Research 936, pages 2225-2229.
Crossref
Maria Sabrina Sarto, Sandra Greco & Alessio Tamburrano. (2014) Shielding Effectiveness of Protective Metallic Wire Meshes: EM Modeling and Validation. IEEE Transactions on Electromagnetic Compatibility 56:3, pages 615-621.
Crossref
Larissa Panina & Dmitriy Makhnovskiy. (2014) Microwave permittivity and permeability of magnetic wire composites. physica status solidi (a) 211:5, pages 1019-1029.
Crossref
Fabrizia Ghezzo, Xiang Yi, Xi Geng Miao, Chun Lin Ji & Ruo Peng Liu. (2014) Broadband Microwave Transmission Achieved by Using Engineered Sandwich Materials. Advanced Materials Research 915-916, pages 493-497.
Crossref
Stergios Papantonis, Stepan Lucyszyn & Ekaterina Shamonina. (2014) Dispersion effects in Fakir's bed of nails metamaterial waveguides. Journal of Applied Physics 115:5, pages 054903.
Crossref
Zhun Yang, Wei Song & Xin-Qing Sheng. (2014) A Modified PML in FDTD Modeling of a Uniaxial Wire Medium. IEEE Antennas and Wireless Propagation Letters 13, pages 1191-1194.
Crossref
Andrey V. Tyukhtin & Viktor V. Vorobev. (2014) Radiation of charges moving along the boundary of a wire metamaterial. Physical Review E 89:1.
Crossref
Wei Song, Zhun Yang, Xin-Qing Sheng & Yang Hao. (2013) Accurate modeling of high order spatial dispersion of wire medium. Optics Express 21:24, pages 29836.
Crossref
Andrey V. Tyukhtin & Viktor V. Vorobev. (2013) Cherenkov radiation in a metamaterial comprised of coated wires. Journal of the Optical Society of America B 30:6, pages 1524.
Crossref
Inigo Liberal, Inigo Ederra, Ramon Gonzalo & Richard W. Ziolkowski. (2013) CIRCUIT AND MULTIPOLAR APPROACHES TO INVESTIGATE THE BALANCE OF POWERS IN 2D SCATTERING PROBLEMS. Progress In Electromagnetics Research 142, pages 799-823.
Crossref
Amitesh Kumar, Arijit Majumder, Sougata Chatterjee, Shantanu Das & Subal Kar. (2012) A novel approach to determine the plasma frequency for wire media. Metamaterials 6:1-2, pages 43-50.
Crossref
Constantin R. Simovski, Pavel A. Belov, Alexander V. Atrashchenko & Yuri S. Kivshar. (2012) Wire Metamaterials: Physics and Applications. Advanced Materials 24:31, pages 4229-4248.
Crossref
Andrei Andryieuski, Sangwoo Ha, Andrey A. Sukhorukov, Yuri S. Kivshar & Andrei V. Lavrinenko. (2012) Bloch-mode analysis for retrieving effective parameters of metamaterials. Physical Review B 86:3.
Crossref
V V Vorobev & A V Tyukhtin. (2012) Radiation of a charge moving in wire metamaterial perpendicularly to the main axis. Journal of Physics: Conference Series 357, pages 012006.
Crossref
Viktor V. Vorobev & Andrey V. Tyukhtin. (2012) Nondivergent Cherenkov Radiation in a Wire Metamaterial. Physical Review Letters 108:18.
Crossref
Iñigo Liberal, Igor S. Nefedov, Iñigo Ederra, Ramón Gonzalo & Sergei A. Tretyakov. (2012) Reconfigurable Artificial Surfaces Based on Impedance Loaded Wires Close to a Ground Plane. IEEE Transactions on Antennas and Propagation 60:4, pages 1921-1930.
Crossref
I. Liberal, I. Ederra & R. Gonzalo. (2012) Theory of ferromagnetic wires resonating in the proximity of a ground plane: Application to artificial impedance surfaces. Journal of Applied Physics 111:6.
Crossref
I. V. Bychkov, I. S. Zotov & A. A. Fedii. (2011) Microwave transmission amplitude-frequency characteristic of two-dimensional composite electromagnetic crystal based on copper cylinders. Technical Physics Letters 37:12, pages 1106-1108.
Crossref
Yüksel Ayaz & Nurgül Akıncı. (2011) Dyadic Green's function study of band structures of dispersive photonic crystals. Journal of Quantitative Spectroscopy and Radiative Transfer 112:18, pages 2814-2825.
Crossref
I. Liberal, I. S. Nefedov, I. Ederra, R. Gonzalo & S. A. Tretyakov. (2011) On the effective permittivity of arrays of ferromagnetic wires. Journal of Applied Physics 110:10.
Crossref
I. Liberal, I. S. Nefedov, I. Ederra, R. Gonzalo & S. A. Tretyakov. (2011) Electromagnetic response and homogenization of grids of ferromagnetic microwires. Journal of Applied Physics 110:6.
Crossref
Andrey V Tyukhtin & Emma G Doilnitsina. (2011) Effective permittivity of a metamaterial from coated wires. Journal of Physics D: Applied Physics 44:26, pages 265401.
Crossref
M. Ipatov, G. R. Aranda, V. Zhukova, L. V. Panina, J. González & A. Zhukov. (2011) Tunable effective permittivity of composites based on ferromagnetic microwires with high magneto-impedance effect. Applied Physics A 103:3, pages 693-697.
Crossref
A. I. Căbuz, A. Nicolet, F. Zolla, D. Felbacq & G. Bouchitté. (2011) Homogenization of nonlocal wire metamaterial via a renormalization approach. Journal of the Optical Society of America B 28:5, pages 1275.
Crossref
L. V. Panina, M. Ipatov, V. Zhukova, A. Zhukov & J. Gonzalez. (2011) Magnetic field effects in artificial dielectrics with arrays of magnetic wires at microwaves. Journal of Applied Physics 109:5.
Crossref
Zeshan Akbar Awan & Azhar Abbas Rizvi. (2011) EFFECTS OF RANDOM ERRORS UPON EFFECTIVE PERMITTIVITY OF A COMPOSITE CONTAINING SHORT NEEDLES. Progress In Electromagnetics Research M 16, pages 117-131.
Crossref
Wenshan Cai & Vladimir ShalaevW. Cai & V. Shalaev. 2010. Optical Metamaterials. Optical Metamaterials 59 75 .
Stanislav I. Maslovski & Mário G. Silveirinha. (2009) Nonlocal permittivity from a quasistatic model for a class of wire media. Physical Review B 80:24.
Crossref
A Demetriadou & J B Pendry. (2009) Numerical analysis of Swiss roll metamaterials. Journal of Physics: Condensed Matter 21:32, pages 326006.
Crossref
Giampiero Lovat. (2009) Near-Field Shielding Effectiveness of 1-D Periodic Planar Screens With 2-D Near-Field Sources. IEEE Transactions on Electromagnetic Compatibility 51:3, pages 708-719.
Crossref
A. Vahdati & A. J. Viitanen. (2009) Reflection and transmission fields in tilted wire medium interface. Microwave and Optical Technology Letters 51:8, pages 1991-1994.
Crossref
Yan Zhao, Pavel Belov & Yang Hao. (2009) Subwavelength internal imaging by means of a wire medium. Journal of Optics A: Pure and Applied Optics 11:7, pages 075101.
Crossref
Giampiero Lovat. (2009) Shielding effectiveness of 1-D periodic composite screens in the presence of electric line sources: Full-wave analysis and limits of homogenization. Shielding effectiveness of 1-D periodic composite screens in the presence of electric line sources: Full-wave analysis and limits of homogenization.
I. S. Nefedov, A. S. Soloviev, A. C. Tarot & W. Abdouni. (2009) Surface waves in a magnetized ferrite slab filled with a wire medium. The European Physical Journal Applied Physics 46:3, pages 32606.
Crossref
D P Belozorov, M K Khodzitsky & S I Tarapov. (2009) Tamm states in magnetophotonic crystals and permittivity of the wire medium. Journal of Physics D: Applied Physics 42:5, pages 055003.
Crossref
G. Donzelli, A. Vallecchi, F. Capolino & A. Schuchinsky. (2009) Metamaterial made of paired planar conductors: Particle resonances, phenomena and properties. Metamaterials 3:1, pages 10-27.
Crossref
Mihail Ipatov, Larissa Panina, Gloria R. Aranda, Valentina Zhukova, Arcady Zhukov & Julian Gonzalez. (2011) Tunable Microwave Composites Containing Ferromagnetic Microwires. MRS Proceedings 1223.
Crossref
Giampiero Lovat & Salvatore Celozzi. (2008) Shielding effectiveness of planar negative-permeability screens. Shielding effectiveness of planar negative-permeability screens.
A Demetriadou & J B Pendry. (2008) Taming spatial dispersion in wire metamaterial. Journal of Physics: Condensed Matter 20:29, pages 295222.
Crossref
P. Burghignoli, G. Lovat, F. Capolino, D.R. Jackson & D.R. Wilton. (2008) Modal Propagation and Excitation on a Wire-Medium Slab. IEEE Transactions on Microwave Theory and Techniques 56:5, pages 1112-1124.
Crossref
Giampiero Lovat, Paolo Burghignoli & Salvatore Celozzi. (2008) Shielding Properties of a Wire-Medium Screen. IEEE Transactions on Electromagnetic Compatibility 50:1, pages 80-88.
Crossref
Pekka Ikonen, Elena Saenz, Ramon Gonzalo, Constantin Simovski & Sergei Tretyakov. (2007) Mesoscopic effective material parameters for thin layers modeled as single and double grids of interacting loaded wires. Metamaterials 1:2, pages 89-105.
Crossref
Pekka M. T. Ikonen, Elena Saenz, RamÓn Gonzalo & Sergei A. Tretyakov. (2007) Modeling and Analysis of Composite Antenna Superstrates Consisting on Grids of Loaded Wires. IEEE Transactions on Antennas and Propagation 55:10, pages 2692-2700.
Crossref
E Saenz, I Ederra, P Ikonen, S Tretyakov & R Gonzalo. (2007) Power transmission enhancement by means of planar meta-surfaces. Journal of Optics A: Pure and Applied Optics 9:9, pages S308-S314.
Crossref
Giampiero Lovat & Paolo Burghignoli. (2007) Shielding Effectiveness of a Metamaterial Slab. Shielding Effectiveness of a Metamaterial Slab.
Filippo Capolino, David R. Jackson, Donald R. Wilton & Leopold B. Felsen. (2007) Comparison of Methods for Calculating the Field Excited by a Dipole Near a 2-D Periodic Material. IEEE Transactions on Antennas and Propagation 55:6, pages 1644-1655.
Crossref
Yan Zhao, Pavel A. Belov & Yang Hao. (2007) Modelling of Wave Propagation in Wire Media Using Spatially Dispersive Finite-Difference Time-Domain Method: Numerical Aspects. IEEE Transactions on Antennas and Propagation 55:6, pages 1506-1513.
Crossref
I.S. Nefedov, A.-C. Tarot & Wafa Abdouni. (2007) Novel Metamaterial: Magnetized Ferrite - Wire Medium. Novel Metamaterial: Magnetized Ferrite - Wire Medium.
Igor S. Nefedov, Sergei A. Tretyakov, Jussi Saily, Xu Liangge, Tommi Mynttinen & Mikko Kaunisto. (2007) Application of Wire Media Layers for Coupling Reduction in Antenna Arrays and Microwave Devices. Application of Wire Media Layers for Coupling Reduction in Antenna Arrays and Microwave Devices.
H. Talleb, D. Lautru & V. Fouad Hanna. (2007) Characterization of electronically controlled electromagnetic band gap structures. The European Physical Journal Applied Physics 38:1, pages 7-13.
Crossref
E. Saenz, P. Ikonen, R. Gonzalo, I. Ederra, P. de Maagt & S. Tretyakov. (2007) Modelling and Analysis of Composite Antenna Superstrates Based on Grids of Dipoles and Wires. Modelling and Analysis of Composite Antenna Superstrates Based on Grids of Dipoles and Wires.
S. Tretyakov & S. Maslovski. (2007) Veselago Materials: What is Possible and Impossible about the Dispersion of the Constitutive Parameters. IEEE Antennas and Propagation Magazine 49:1, pages 37-43.
Crossref
I.S. Nefedov & A.J. Viitanen. (2007) Effective medium approach for subwavelength resolution. Electronics Letters 43:22, pages 1206.
Crossref
Giampiero Lovat, Paolo Burghignoli, Filippo Capolino & David R. Jackson. (2006) High directivity in low‐permittivity metamaterial slabs: Ray‐optic vs. leaky‐wave models. Microwave and Optical Technology Letters 48:12, pages 2542-2548.
Crossref
I. S. Nefedov, X. Dardenne, C. Craeye & S. A. Tretyakov. (2006) Backward waves in a waveguide, filled with wire media. Microwave and Optical Technology Letters 48:12, pages 2560-2564.
Crossref
Davor Bonefačić, Silvio Hrabar & Dražen Kvakan. (2006) Experimental investigation of radiation properties of an antenna embedded in low permittivity thin‐wire‐based metamaterial. Microwave and Optical Technology Letters 48:12, pages 2581-2586.
Crossref
Yan Zhao, Pavel A. Belov & Yang Hao. (2006) Spatially dispersive finite-difference time-domain analysis of sub-wavelength imaging by the wire medium slabs. Optics Express 14:12, pages 5154.
Crossref
M.G. Silveirinha. (2006) Additional Boundary Condition for the Wire Medium. IEEE Transactions on Antennas and Propagation 54:6, pages 1766-1780.
Crossref
Pavel Belov & Mario Silveirinha. (2006) Resolution of subwavelength transmission devices formed by a wire medium. Physical Review E 73:5.
Crossref
Mário G. Silveirinha. (2006) Nonlocal homogenization model for a periodic array of -negative rods . Physical Review E 73:4.
Crossref
G. Lovat, P. Burghignoli, F. Capolino, D.R. Jackson & D.R. Wilton. (2006) Analysis of Directive Radiation From a Line Source in a Metamaterial Slab With Low Permittivity. IEEE Transactions on Antennas and Propagation 54:3, pages 1017-1030.
Crossref
G. Fedorov, S. I. Maslovski, A. V. Dorofeenko, A. P. Vinogradov, I. A. Ryzhikov & S. A. Tretyakov. (2006) Subwavelength imaging: Resolution enhancement using metal wire gratings. Physical Review B 73:3.
Crossref
P. Ikonen, M. Karkkainen, C. Simovski, P. Belov & S. Tretyakov. (2006) Light-weight base station antenna with artificial wire medium lens. IEE Proceedings - Microwaves, Antennas and Propagation 153:2, pages 163.
Crossref
Igor S. Nefedov, Ari J. Viitanen & Sergei A. Tretyakov. (2005) Electromagnetic wave refraction at an interface of a double wire medium. Physical Review B 72:24.
Crossref
I.V. Lindell & A.H. Sihvola. (2005) Realization of the PEMC boundary. IEEE Transactions on Antennas and Propagation 53:9, pages 3012-3018.
Crossref
Pavel A. Belov & Constantin R. Simovski. (2005) Homogenization of electromagnetic crystals formed by uniaxial resonant scatterers. Physical Review E 72:2.
Crossref
A. Viitanen & M. Englund. (2005) Radiated and guided waves in planar dipole arrays. Radiated and guided waves in planar dipole arrays.
I. S. Nefedov, A. J. Viitanen & S. A. Tretyakov. (2005) Propagating and evanescent modes in two-dimensional wire media. Physical Review E 71:4.
Crossref
M.G. Silveirinha & C.A. Fernandes. (2005) Homogenization of metamaterial surfaces and slabs: the crossed wire mesh canonical problem. IEEE Transactions on Antennas and Propagation 53:1, pages 59-69.
Crossref
F. Capolino, D.R. Jackson & D.R. Wilton. (2005) Fundamental properties of the field at the interface between air and a periodic artificial material excited by a line source. IEEE Transactions on Antennas and Propagation 53:1, pages 91-99.
Crossref
P.A. Belov & C.R. Simovsk. (2005) On the low-frequency spatial dispersion in wire media. On the low-frequency spatial dispersion in wire media.
G. Lovat, P. Burghignoli, F. Capolino, D.R. Jackson & D.R. Wilton. (2005) Directive radiation from a line source in a metamaterial slab with low permittivity. Directive radiation from a line source in a metamaterial slab with low permittivity.
C. R. Simovski & P. A. Belov. (2004) Low-frequency spatial dispersion in wire media. Physical Review E 70:4.
Crossref
P.A. Belov & C.R. Simovski. (2004) Backward waves in uniaxial materials and subwavelength waveguides formed by resonant scatterers. Backward waves in uniaxial materials and subwavelength waveguides formed by resonant scatterers.
C.R. Simovski, P.A. Belov & Sailing He. (2003) Backward wave region and negative material parameters of a structure formed by lattices of wires and split-ring resonators. IEEE Transactions on Antennas and Propagation 51:10, pages 2582-2591.
Crossref
P. A. Belov, C. R. Simovski & S. A. Tretyakov. (2003) Example of bianisotropic electromagnetic crystals: The spiral medium. Physical Review E 67:5.
Crossref
Constantin R Simovski & Sailing He. (2003) Frequency range and explicit expressions for negative permittivity and permeability for an isotropic medium formed by a lattice of perfectly conducting particles. Physics Letters A 311:2-3, pages 254-263.
Crossref
P. A. Belov, R. Marqués, S. I. Maslovski, I. S. Nefedov, M. Silveirinha, C. R. Simovski & S. A. Tretyakov. (2003) Strong spatial dispersion in wire media in the very large wavelength limit. Physical Review B 67:11.
Crossref
Constantin R. Simovski. (2003) Plane-wave Reflection and Transmission by Grids of Conducting Ω-particles and Dispersion of Ω Electromagnetic Crystals. AEU - International Journal of Electronics and Communications 57:5, pages 358-364.
Crossref
P. A. Belov, C. R. Simovski & S. A. Tretyakov. (2002) Two-dimensional electromagnetic crystals formed by reactively loaded wires. Physical Review E 66:3.
Crossref
S. A. Tretyakov, I. S. Nefedov, C. R. Simovski & S. I. Maslovski. 2002. Advances in Electromagnetics of Complex Media and Metamaterials. Advances in Electromagnetics of Complex Media and Metamaterials 99 122 .
Constantin R. Simovski. 2002. Advances in Electromagnetics of Complex Media and Metamaterials. Advances in Electromagnetics of Complex Media and Metamaterials 229 244 .

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