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[2020.4] Christopoulos T., Tsilipakos O., and Kriezis Em. E., "Perturbation theory for Kerr nonlinear leaky cavities", Optics Letters45 (23), 6442-6445, (2020). [pdf]

[2020.3] Chatzidimitriou D. and Kriezis Em. E., "Light propagation in nanophotonic waveguides considering graphene's saturable absorption", Physical Review A102 (5), 053512, (2020). [pdf]

[2020.2] Christopoulos T., Tsilipakos O., and Kriezis Em. E., "Degenerate four-wave mixing in THz with standing-wave graphene resonators", Journal of the Optical Society of America B37 (9), 2626-2636, (2020). [pdf]

[2020.1] Christopoulos T., Ataloglou V. G., and Kriezis Em. E., "All-optical nanophotonic resonant element for switching and routing applications exploiting graphene saturable absorption", Journal of Applied Physics127 (22), 223102, (2020). [pdf]

[2019.4] Sinatkas G., Christopoulos T., Tsilipakos O., and Kriezis Em. E., "Comparative study of silicon photonic modulators based on transparent conducting oxide and graphene", Physical Review Applied12 (6), 064023, (2019). [pdf]

[2019.3] Maiolo L., Ferraro A., Maita F., Beccherelli R., Kriezis Em. E, Yioultsis T. V., and Zografopoulos D. C., "Quarter-wave plate metasurfaces on electromagnetically thin polyimide substrates", Applied Physics Letters115 (24), 241602, (2019). [pdf]

[2019.2] Christopoulos T., Tsilipakos O., Sinatkas G., and Kriezis Em. E., "On the calculation of the quality factor in contemporary photonic resonant structures", Optics Express27 (10), 14505, (2019). [pdf]

[2019.1] Isić G., Sinatkas G., Zografopoulos D. C., Vasić B., Ferraro A., Beccherelli R., Kriezis Em. E, Belić M., "Electrically tunable metal–semiconductor–metal terahertz metasurface modulators", IEEE Journal of Selected Topics in Quantum Electronics25 (3), 8500108, (2019). [pdf]

[2018.5] Christopoulos T., Tsilipakos O., Sinatkas G., and Kriezis Em. E., "Degenerate four-wave mixing in nonlinear resonators comprising two-dimensional materials: A coupled-mode theory approach", Physical Review B98 (23), 235421, (2018). [pdf]

[2018.4] Sinatkas G. and Kriezis Em. E., "Silicon-photonic electro-optic phase modulators integrating transparent conducting oxides", IEEE Journal of Quantum Electronics, 54 (4), 8400208, (2018). [pdf]

[2018.3] Chatzidimitriou D. and Kriezis Em. E., "Optical Switching Through Graphene-Induced Exceptional Points", Journal of the Optical Society of America B35 (7), 1525-1535, (2018). [pdf]

[2018.2] Ataloglou V. G., Christopoulos T., and Kriezis Em. E., "Nonlinear coupled-mode-theory framework for graphene-induced saturable absorption in nanophotonic resonant structures", Physical Review A97 (6), 063836, (2018). [pdf]

[2018.1] Zografopoulos D. C., Sinatkas G., Lotfi E., Shahada L. A., Swillam M. A., Kriezis Em. E., and Beccherelli R., "Amplitude modulation in infrared metamaterial absorbers based on electro-optically tunable conducting oxides", Applied Physics A124 (2), 105, (2018). [pdf]

[2017.3] Christopoulos T., Tsilipakos O., and Kriezis Em. E., "Low-power bistability in graphene-comprising 3D photonic resonant circuits", Journal of Applied Physics122, 233101, (2017). [pdf]

[2017.2] Zografopoulos D. C., Kriezis Em. E., and Beccherelli R., "Design of Switchable Guided-Mode Resonant Filters in Zenithal-Bistable Liquid-Crystal Gratings", IEEE Photonics Technology Letters29 (16), 1367-1370, (2017). [pdf]

[2017.1] Sinatkas G., Pitilakis A., Zografopoulos D. C., Beccherelli R., and Kriezis Em. E., "Transparent conducting oxide electro-optic modulators on silicon platforms: A comprehensive study based on the drift-diffusion semiconductor model", Journal of Applied Physics121, 023109, (2017). [pdf]

[2016.5] Christopoulos T., Tsilipakos O., Grivas N., and Kriezis Em. E., "Coupled-mode-theory framework for nonlinear resonators comprising graphene," Physical Review E 94 (6), 062219, (2016). [pdf]

[2016.4] Zografopoulos D. C., Isic G., Kriezis, Em. E., and Beccherelli R., "A switchable circular polarizer based on zenithal bistable liquid crystal gratings," Journal of Physics D: Applied Physics49, 195104, (2016). [pdf]

[2016.3] Pitilakis A., Chatzidimitriou D., and Kriezis, Em. E., "Theoretical and numerical modeling of linear and nonlinear propagation in graphene waveguides," Optical and Quantum Electronics, 48 (4), 243, (2016). [pdf]

[2016.2] Christopoulos T., Sinatkas G., Tsilipakos O., and Kriezis Em. E., "Bistable action with hybrid plasmonic Bragg-grating resonators," Optical and Quantum Electronics 48 (2), 128, (2016). [pdf]

[2016.1] Tsilipakos O., Christopoulos T., and Kriezis Em. E., "Long-Range Hybrid Plasmonic Disk Resonators for mW Bistability and Self-Pulsation," IEEE/OSA Journal of Lightwave Technology34 (4), 1333-1343, (2016). [pdf]

[2015.3] Zografopoulos D. C., Prokopidis K. P., Tofani S., Chojnowska O., Dabrowski R. D., Kriezis Em. E., and Beccherelli R, "An ADE-FDTD Formulation for the Study of Liquid-Crystal Components in the Terahertz Spectrum," Molecular Crystals and Liquid Crystals619, 49-60, (2015). 

[2015.2] Chatzidimitriou D., Pitilakis A., and Kriezis Em. E., "Rigorous calculation of nonlinear parameters in graphene-comprising waveguides,Journal of Applied Physics118, 023105, (2015). [pdf]

[2015.1] Zografopoulos D. C., Pitilakis A., and Kriezis Em. E., "Liquid crystal-infiltrated photonic crystal fibres for switching applications," Optofluidics, Sensors and Actuators in Microstructured Optical Fibers, Woodhead Publishing, ISBN 9781782423294, 55-83, (2015).

[2014.5] Zografopoulos D. C., Beccherreli R., and Kriezis Em. E., "Beam-splitter switches based on zenithal bistable liquid-crystal gratings," Physical Review E, 90, 042503 (2014). [pdf]

[2014.4] Zografopoulos D. C. and Kriezis Em. E., "Switchable beam steering with zenithal bistable liquid-crystal blazed gratings," Optics Letters, 39 (20), 5842-5845 (2014). [pdf]

[2014.3] Tsilipakos O. and Kriezis Em. E., "Optical bistability with hybrid silicon-plasmonic disk resonators," Journal of the Optical Society of America B, 31 (7), 1698-1705 (2014). [pdf]

[2014.2] Nielsen M. G., Bernardin T., Hassan K., Kriezis Em. E., and Weeber J-C, "Silicon-loaded surface plasmon polariton waveguides for nanosecond thermo-optical switching," Optics Letters39 (8), 2282-2285, (2014).

[2014.1] Pitilakis A., Tsilipakos O., and Kriezis Em. E., "Optimizing silicon-plasmonic waveguides for χ(3) nonlinear applications," Applied Physics A115 (2), 475-479, (2014). [pdf]

[2013.7] Ketzaki D., Tsilipakos O., Yioultsis T. V., and Kriezis Em. E., "Electromagnetically Induced Transparency with Hybrid Silicon-Plasmonic Traveling-Wave Resonators," Journal of Applied Physics, 114, 113107, (2013). [pdf]

[2013.6] Prokopidis K., Zografopoulos D. C., and Kriezis Em. E., "Rigorous broadband investigation of liquid-crystal plasmonic structures using FDTD dispersive-anisotropic models," Journal of the Optical Society of America B, 30 (10), 2722-2730, (2013). [pdf]

[2013.5] Zografopoulos D. C., Pitilakis A., and Kriezis Em. E., "Dual-Band Tunable Polarization Splitter Based on Dual-Core Liquid-Crystal Photonic Crystal Fibers," Applied Optics, 52 (26), 6439-6444, (2013). [pdf]

[2013.4] Pitilakis A. and Kriezis Em. E., "Highly nonlinear hybrid silicon-plasmonic waveguides: analysis and optimization," Journal of the Optical Society of America B, 30 (7), 1954-1965, (2013). [pdf]

[2013.3] Tsilipakos O., Zografopoulos D. C., and Kriezis Em. E., "Quasi-soliton pulse-train propagation in dispersion-managed silicon rib waveguides," IEEE Photonics Technology Letters, 25 (8), 724-727, (2013). [pdf]

[2013.2] Chatzidiamantis N. D., Michalopoulos D. S., Kriezis Em. E., Karagiannidis G. K., and Schober R., "Relay selection protocols for relay-assisted free-space optical systems," Journal of Optical Communications and Networking, 5 (1), 92-103, (2013).

[2013.1] Zografopoulos D. C., Beccherelli R., Tasolamprou A. C., and Kriezis Em. E., "Liquid–crystal tunable waveguides for integrated plasmonic components," Photonics and Nanostructures – Fundamentals and Applications, 11 (1), 73-84, (2013).

[2012.6] Assimonis S. D., Yioultsis T. V., Rekanos I. T., Kriezis Em. E., and Antonopoulos C. S., "Design and optimization of uniplanar EBG structures," International Journal of Applied Electromagnetics & Mechanics, 39, 615-621, (2012).

[2012.5] Zografopoulos D. C., Asquin, R., Kriezis Em. E., d'Alessandro A., and Beccherell, R., "Guided-Wave Liquid-Crystal Photonics," Lab Chip, 12 (19), 3598-3610, (2012). [pdf]

[2012.4] Zografopoulos D. C., Beccherelli R., and Kriezis Em. E., "Quasi-soliton propagation in dispersion-engineered silicon nanowires," Optics Communications, 285 (15), 3306-3311, (2012).

[2012.3] Tsilipakos O., Pitilakis A., Yioultsis T. V., Papaioannou S., Vyrsokinos K., Kalavrouziotis D., Giannoulis G., Apostolopoulos D., Avramopoulos H., Tekin T., Baus M., Karl M., Hassan K., Weeber J.-C., Markey L., Dereux A., Kumar A., Bozhevolnyi S. I., Pleros N., and Kriezis Em. E., "Interfacing dielectric-loaded plasmonic and silicon photonic waveguides: Theoretical analysis and experimental demonstration," IEEE Journal of Quantum Electronics, 48 (5), 678-687, (2012). [pdf]

[2012.2] Kalavrouziotis D., Papaioannou S., Giannoulis G., Apostolopoulos D., Hassan K., Markey L., Weeber J.-C., Dereux A., Kumar A., Bozhevolnyi S. I., Baus M., Karl M., Tekin T., Tsilipakos O., Pitilakis A., Kriezis Em. E., Avramopoulos H., Vyrsokinos K., and Pleros N., "0.48Tb/s (12x40Gb/s) WDM transmission and high-quality thermo-optic switching in dielectric loaded plasmonics," Optics Express, 20 (7), 7655-7662, (2012). [pdf]

[2012.1] Giannoulis G., Kalavrouziotis D., Apostolopoulos D., Papaioannou S., Kumar A., Bozhevolnyi S. I., Markey L., Hassan K., Weeber J.-C., Dereux A., Baus M., Karl M., Tekin T., Tsilipakos O., Pitilakis A., Kriezis Em. E., Vyrsokinos K., Avramopoulos H., and Pleros N., "Data transmission and thermo-optic tuning Performance of dielectric-loaded plasmonic structures hetero-integrated on a silicon chip," IEEE Photonics Technology Letters, 24 (5), 374-376, (2012).

[2011.11] Hassan K., Weeber J.-C., Markey L., Dereux A., Tsilipakos O., Pitilakis A., and Kriezis Em. E., "Thermo-optic plasmo-photonic mode interference switches based on dielectric loaded waveguides," Applied Physics Letters, 99 (24), 241110, (2011). [pdf]

[2011.10] Wells G. G., Sampara N., Kriezis Em. E., Fyson J., and Brown C. V., "Diffraction grating with suppressed zero order fabricated using dielectric forces," Optics Letters, 36 (22), 4404-4406, (2011). [pdf]

[2011.9] Tasolamprou A. C., Zografopoulos D. C., and Kriezis Em. E., "Liquid crystal-based dielectric loaded surface plasmon polariton optical switches," Journal of Applied Physics, 110 (9), 093102, (2011). [pdf]

[2011.8] Zografopoulos D. C., Vázquez C., Kriezis Em. E. and Yioultsis T. V., "Dual-core photonic crystal fibers for tunable polarization mode dispersion compensation," Optics Express, 19 (22), 21680-21691, (2011). [pdf]

[2011.7] Pitilakis A. and Kriezis Em. E., "Longitudinal 2x2 switching configurations based on thermo-optically addressed dielectric-loaded plasmonic waveguides," IEEE/OSA Journal of Lightwave Technology, 29 (17), 2636-2546, (2011). [pdf]

[2011.6] Papaioannou S., Vyrsokinos K., Tsilipakos O., Pitilakis A., Hassan K., Weeber J.-C., Markey L., Dereux A., Bozhevolnyi S. I., Miliou A., Kriezis Em. E., and Pleros N., "A 320Gb/s-throughput capable 2x2 silicon-plasmonic router architecture for optical interconnects," IEEE/OSA Journal of Lightwave Technology, 29 (21), 3185-3195, (2011). [pdf]

[2011.5] Pleros N., Kriezis Em. E., and Vyrsokinos K., "Optical interconnects using plasmonics and Si-photonics, " IEEE Photonics Journal, 3 (2), 296-301, (2011). [pdf]

[2011.4] Pitilakis A., Zografopoulos D. C., and Kriezis Em. E.,"In-line polarization controller based on liquid-crystal photonic crystal fibers," IEEE/OSA Journal of Lightwave Technology, 29 (17), 2560-2569, (2011). [pdf]

[2011.3] Tsilipakos O., Kriezis Em. E., and Yioultsis T. V., "Boundary condition for the efficient excitation and absorption of hybrid waveguide modes in finite element formulations," Microwave and Optical Technology Letters, 53 (11), 2626-2631, (2011). [pdf]

[2011.2] Tsilipakos O., Kriezis Em. E., and Bozhevolnyi S. I., "Thermo-optic microring resonator switching elements made of dielectric-loaded plasmonic waveguides," Journal of Applied Physics, 109 (7), 073111, (2011). [pdf]

[2011.1] Tsilipakos O., Pitilakis A., Tasolamprou A. C., Yioultsis T. V., and Kriezis Em. E., "Computational techniques for the analysis and design of dielectric-loaded plasmonic circuitry," Optical and Quantum Electronics, 42 (8), 541-555, (2011). [pdf]


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