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Documents dont l'auteur est "Kodera, T."

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Nombre de documents: 35

B

Boucher, V., Carignan, L.-P., Kodera, T., Caloz, C., Yelon, A., & Ménard, D. (2009). Effective permeability tensor and double resonance of interacting bistable ferromagnetic nanowires. Physical Review B, 80(22), 4010-4014. Lien externe

C

Caloz, C., Kodera, T., Sounas, D. L., & Gurlek, B. (septembre 2013). Analytical modeling of a magnetless non-reciprocal metasurface under oblique plane-wave incidence [Communication écrite]. 7th International Congress on Advanced Electromagnetic Materials in Microwaves and Optics (METAMATERIALS 2013), Sharjah, United Arab Emirates. Non disponible

Caloz, C., Kodera, T., & Sounas, D. L. (septembre 2013). Magnet-less non-reciprocal metamaterials [Communication écrite]. 7th International Congress on Advanced Electromagnetic Materials in Microwaves and Optics (METAMATERIALS 2013), Sharjah, United Arab Emirates. Non disponible

Caloz, C., Shahvarpour, A., Sounas, D. L., Kodera, T., Gurlek, B., & Chamanara, N. (mai 2013). Practical realization of perfect electromagnetic conductor (PEMC) boundaries using ferrites, magnet-less non-reciprocal metamaterials (MNMs) and graphene [Communication écrite]. 21st International Symposium on Electromagnetic Theory (EMTS 2013), Hiroshima, Japan. Lien externe

Caloz, C., Kodera, T., & Sounas, D. L. (septembre 2013). Semiconductor-based non-reciprocal gyrotorpic metamaterials requiring no external magnetic field [Communication écrite]. 7th International Congress on Advanced Electromagnetic Materials in Microwaves Optics (METAMATERIALS 2013), Talence, France. Lien externe

Caloz, C., Sounas, D. L., & Kodera, T. (mars 2012). Magnet-less non-reciprocal metamaterials : an industrial breakthrough? [Communication écrite]. 5th International Workshop on Electromagnetic Matematerials (IWEM-V 2012), Albuquerque, Mexico. Non disponible

Couture, S., Gauthier, J., Kodera, T., & Caloz, C. (2010). Experimental Demonstration And Potential Applications Of A Tunable NRI Ferrite-Wire Metamaterial. IEEE Antennas and Wireless Propagation Letters, 9, 1022-1025. Lien externe

Caloz, C., Kodera, T., Carignan, L. P., Razavipour, H., Ménard, D., & Yelon, A. (janvier 2010). Ferromagnetic nanowire materials and their application to leaky-wave antennas with the benefits of self-biasing, integration and double ferromagnetic resonance [Communication écrite]. CNC/USNC URSI National Radio Science Meeting, Toronto, Ontario, Canada. Non disponible

Carignan, L. P., Kodera, T., Ménard, D., Yelon, A., & Caloz, C. (janvier 2010). Ferromagnetic nanowire metamaterials structures for microwave applications [Communication écrite]. IMS Workshop on New Microwave Devices and Materials Based on Nanotechnology, Anaheim, CA. Non disponible

Caloz, C., Carignan, L.-P., Boucher, V., Kodera, T., Couture, S., Parsa, A., Ménard, D., & Yelon, A. (mai 2010). Recent advances in micro-structured electric and nano-structured magnetic microwave metamaterials [Communication écrite]. IEEE MTT-S International Microwave Symposium (IMS 2010), Anaheim, California. Lien externe

Couture, S., Gauthier, J., Parsa, A., Kodera, T., & Caloz, C. (juillet 2010). Tunable NRI Wedge Made of Metallic Wires in a Ferrite Host: Lens Structure, Experimental Demonstration, and Scanning Antenna / Spectral Analyzer Applications [Communication écrite]. IEEE International Symposium Antennas and Propagation and CNC-USNC/URSI Radio Science Meeting, Toronto, Ontario. Lien externe

Carignan, L. P., Boucher, V., Kodera, T., Caloz, C., Yelon, A., & Ménard, D. (2009). Double Ferromagnetic Resonance in Nanowire Arrays. Applied Physics Letters, 95(6). Lien externe

Carignan, L.-P., Kodera, T., Yelon, A., Caloz, C., & Ménard, D. (septembre 2009). Integrated and self-biased planar magnetic microwave circuits based on ferromagnetic nanowire substrates [Communication écrite]. European Microwave Conference (EuMC 2009), Rome, Italy. Lien externe

Carignan, L.-P., Kodera, T., Ménard, D., & Caloz, C. (2009). Moldable polymer/ferrite composite and application to an integrated CPW tunable phase shifter. IEEE Microwave and Wireless Components Letters, 19(4), 206-208. Lien externe

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Gupta, S., Nguyen, H. V., Kodera, T., Abielmona, S., & Caloz, C. (décembre 2009). CRLH leaky-wave antenna based frequency division diplexing transceiver yes [Communication écrite]. Asia-Pacific Microwave Conference (APMC 2009), Singapore. Lien externe

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Kodera, T., & Caloz, C. (mai 2014). Tunable magnetless non-reciprocal metamaterials and their applications to circulators [Communication écrite]. 5th International Conference on Metamaterials, Photonic Crystals and Plasmonics (META 2014), Singapore. Non disponible

Kodera, T., Sounas, D. L., & Caloz, C. (août 2013). Magnet-less non-reciprocal metamaterials [Communication écrite]. 34th Progress in Electromagnetics Research Symposium (PIERS 2013), Stockholm, Sweden. Non disponible

Kodera, T., & Caloz, C. (juin 2013). Multi-function reconfigurable microwave component based on a switchable FET circuit [Communication écrite]. IEEE MTT-S International Microwave Symposium (IMS 2013), Seattle, Wash., USA (3 pages). Lien externe

Kodera, T., Sounas, D. L., & Caloz, C. (janvier 2011). Artificial magnetic gyrotropy and its applications to RF devices [Communication écrite]. IEICE Society Conference, Sapporo, Japan. Non disponible

Kodera, T., Soumas, D. L., & Caloz, C. (2011). Nonreciprocal Magnetless CRLH Leaky-Wave Antenna Based on a Ring Metamaterial Structure. IEEE Antennas and Wireless Propagation Letters, 10, 1551-1554. Lien externe

Kodera, T., Sounas, D. L., & Caloz, C. (octobre 2011). PEMC metamaterials surface whose gyrotropy is provided by traveling-wave ring resonators [Communication écrite]. International Symposium on Antennas & Propagation (ISAP 2011), Jeju, South Korea. Lien externe

Kodera, T., & Caloz, C. (2010). Integrated Leaky-Wave Antenna-Duplexer/Diplexer Using CRLH Uniform Ferrite-Loaded Open Waveguide. IEEE Transactions on Antennas and Propagation, 58(8), 2508-2514. Lien externe

Kodera, T., & Caloz, C. (décembre 2010). Leakage control in the CRLH uniform ferrite-loaded open waveguide leaky-wave antenna using a transversally extending evanescent waveguide structure [Communication écrite]. Asia-Pacific Microwave Conference (APCM 2010), Yokohaa, Japan. Lien externe

Kodera, T., & Caloz, C. (2010). Low-Profile Leaky Wave Electric Monopole Loop Antenna Using the Beta=0 Regime of a Ferrite-Loaded Open Waveguide. IEEE Transactions on Antennas and Propagation, 58(10), 3165-3174. Lien externe

Kodera, T., & Caloz, C. (juillet 2010). Novel magnetic radiative structures inspired by metamaterials concepts [Communication écrite]. American Electromagnetics Conference (AMEREM 2010), Ottawa, Ontario, Canada. Non disponible

Kodera, T., & Caloz, C. (2009). Dual-band full-space scanning leaky-wave antenna based on ferrite-loaded open waveguide. IEEE Antennas and Wireless Propagation Letters, 8, 1202-1205. Lien externe

Kodera, T., & Caloz, C. (juin 2009). Leaky-wave antenna integrated duplexer using CRLH uniform ferrite-loaded open waveguide [Communication écrite]. IEEE MTT-S International Microwave Symposium (IMS 2009), Boston, MA. Lien externe

Kodera, T., Parsa, A., & Caloz, C. (juin 2009). Non-reciprocal ferrite antenna radome: the faradome [Communication écrite]. IEEE International Symposium on Antennas and Propagation & USNC/URSI National Radio Science Meeting, Charleston, South Carolina. Lien externe

Kodera, T., & Caloz, C. (décembre 2008). Comparison of various ferrite-loaded CRLH leaky-wave antenna structures [Communication écrite]. Asia-Pacific Microwave Conference (APMC 2008), Hong Kong and Macau. Lien externe

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Lavigne, G., Kodera, T., & Caloz, C. (septembre 2020). 'Perfect' Faraday-Rotation Metasurface [Communication écrite]. 14th International Congress on Artificial Materials for Novel Wave Phenomena (Metamaterials 2020), New York City, NY, USA. Lien externe

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Sounas, D. L., Kodera, T., & Caloz, C. (juillet 2012). Network modeling of multi-layer magnet-less non-reciprocal gyrotropic metamaterials [Communication écrite]. Joint IEEE International Symposium on Antennas and Propagation and USNC-URSI National Radio Science Meeting (APSURSI 2012), Chicago, IL, United states. Lien externe

Sounas, D. L., Kodera, T., & Caloz, C. (juillet 2011). Non-reciprocal gyrotropic electrically-biased ring metasurface [Communication écrite]. CNC/USNC URSI National Radio Science Meeting, Spokane, WA. Non disponible

Sounas, D. L., Kodera, T., & Caloz, C. (octobre 2011). Non-reciprocal gyrotropic semiconductor-based metasurface not requiring magnetic bias [Communication écrite]. International Congress on Advanced Electromagnetic Materials in Microwaves and Optics (METAMATERIALS 2011), Barcelona, Spain. Non disponible

Shahvarpour, A., Kodera, T., Parsa, A., & Caloz, C. (2010). Arbitrary Electromagnetic Conductor Boundaries Using Faraday Rotation in a Grounded Ferrite Slab. IEEE Transactions on Microwave Theory and Techniques, 58(11), 2781-2793. Lien externe

Shahvarpour, A., Kodera, T., Parsa, A., & Caloz, C. (septembre 2009). Realization of an effective free-space perfect electromagnetic conductor (PEMC) boundary by a grounded ferrite slab using Faraday rotation [Communication écrite]. European Microwave Conference (EuMC 2009), Rome, Italy. Lien externe

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