Search Results - "Porschatis, C."

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  1. 1

    Plasmonics co-integrated with silicon nitride photonics for high-sensitivity interferometric biosensing by Manolis, A, Chatzianagnostou, E, Dabos, G, Pleros, N, Chmielak, B, Giesecke, A L, Porschatis, C, Cegielski, P J, Markey, L, Weeber, J-C, Dereux, A, Tsiokos, D

    Published in Optics express (10-06-2019)
    “…We demonstrate a photonic integrated Mach-Zehnder interferometric sensor, utilizing a plasmonic stripe waveguide in the sensing branch and a photonic variable…”
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    Journal Article
  2. 2

    CMOS plasmonics in WDM data transmission: 200 Gb/s (8 × 25Gb/s) transmission over aluminum plasmonic waveguides by Dabos, G, Manolis, A, Papaioannou, S, Tsiokos, D, Markey, L, Weeber, J-C, Dereux, A, Giesecke, A L, Porschatis, C, Chmielak, B, Pleros, N

    Published in Optics express (14-05-2018)
    “…We demonstrate wavelength-division-multiplexed (WDM) 200 Gb/s (8 × 25 Gb/s) data transmission over 100 μm long aluminum (Al) surface-plasmon-polariton (SPP)…”
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    Journal Article
  3. 3

    Ultra-sensitive refractive index sensor using CMOS plasmonic transducers on silicon photonic interferometric platform by Manolis, A., Chatzianagnostou, E., Dabos, G., Ketzaki, D., Chmielak, B., Giesecke, A. L., Porschatis, C., Cegielski, P. J., Suckow, S., Markey, L., Weeber, J.-C., Dereux, A., Schrittwieser, S., Heer, R., Pleros, N., Tsiokos, D.

    Published in Optics express (06-07-2020)
    “…Optical refractive-index sensors exploiting selective co-integration of plasmonics with silicon photonics has emerged as an attractive technology for…”
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    Journal Article
  4. 4

    Characterization of CMOS metal based dielectric loaded surface plasmon waveguides at telecom wavelengths by Weeber, J-C, Arocas, J, Heintz, O, Markey, L, Viarbitskaya, S, Colas-des-Francs, G, Hammani, K, Dereux, A, Hoessbacher, C, Koch, U, Leuthold, J, Rohracher, K, Giesecke, A L, Porschatis, C, Wahlbrink, T, Chmielak, B, Pleros, N, Tsiokos, D

    Published in Optics express (09-01-2017)
    “…Dielectric loaded surface plasmon waveguides (DLSPPWs) comprised of polymer ridges deposited on top of CMOS compatible metal thin films are investigated at…”
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    Journal Article
  5. 5

    On-Chip Dual-Stream DWDM Eight-Channel-Capable SOI-Based MUX s/DEMUX s With 40-GH z Channel Bandwidth by Papaioannou, S., Fitsios, D., Dabos, G., Vyrsokinos, K., Giannoulis, G., Prinzen, A., Porschatis, C., Waldow, M., Apostolopoulos, D., Avramopoulos, H., Pleros, N.

    Published in IEEE photonics journal (01-02-2015)
    “…We demonstrate two 8 × 1 silicon ring resonator (RR)-based multiplexers (MUXs) integrated on the same chip for dual-stream 16-channel multiplexing/…”
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    Journal Article
  6. 6

    TM grating coupler on low-loss LPCVD based Si3N4 waveguide platform by Dabos, G., Manolis, A., Giesecke, A.L., Porschatis, C., Chmielak, B., Wahlbrink, T., Pleros, N., Tsiokos, D.

    Published in Optics communications (15-12-2017)
    “…We demonstrate, for the first time to our knowledge, a fully etched TM grating coupler for low-loss Low-Pressure-Chemical-Vapor-Deposition (LPCVD) based…”
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    Journal Article
  7. 7
  8. 8

    Efficient Metal-Halide Perovskite Micro Disc Lasers Integrated in a Silicon Nitride Photonic Platform by Cegielski, P. J., Neutzner, S., Porschatis, C., Gandini, M., Schall, D., Perini, C. A.R., Bolten, J., Suckow, S., Chmielak, B., Petrozza, A., Wahlbrink, T., Lemme, M. C., Giesecke, A. L.

    Published in 2018 76th Device Research Conference (DRC) (01-06-2018)
    “…Metal-halide perovskites, low-cost solution processed semiconductors, have been successfully demonstrated in various optoelectronic devices, including…”
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    Conference Proceeding
  9. 9

    Eight-channel second-order ring resonator based SOI multiplexers/demultiplexers for optical interconnects by Papaioannou, S., Dabos, G., Vyrsokinos, K., Giannoulis, G., Prinzen, A., Porschatis, C., Waldow, M., Apostolopoulos, D., Avramopoulos, H., Pleros, N.

    “…We demonstrate two 8×1 silicon ring-based multiplexers for dual stream multiplexing. All resonances were thermo-optically tuned and spaced by 100GHz having…”
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    Conference Proceeding
  10. 10

    Plasmonic-Assisted Mach-Zehnder Interferometric Photonic Sensor using Aluminum Waveguides by Chatzianagnostou, E., Manolis, A., Dabos, G., Ketzaki, D., Chmielak, B., Giesecke, A. L., Porschatis, C., Cegielski, P. J., Suckow, S., Markey, L., Weeber, J. C., Dereux, A., Schrittwieser, S., Heer, R., Pleros, N., Tsiokos, D.

    “…We demonstrate a CMOS compatible interferometric plasmo-photonic sensor exploiting Si 3 N 4 photonic and aluminum (Al) plasmonic stripe waveguides…”
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    Conference Proceeding
  11. 11

    Plasmonic Waveguides Co-Integrated with Si3N4 Waveguide Platform for Integrated Biosensors by Manolis, A., Dabos, G., Pleros, N., Chatzianagnostou, E., Ketzaki, D., Markey, L., Weeber, J.C., Dereux, A., Giesecke, A. L., Porschatis, C., Chmielak, B., Cegielski, P. J., Suckow, S., Tsiokos, D.

    “…Integration of plasmonic waveguides with low-loss photonic platforms have attracted research efforts as the means to benefit from the extra-ordinary features…”
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    Conference Proceeding
  12. 12

    Plasmonic stripes integrated in a silicon nitride Mach Zehnder Interferometer for high sensitivity refractometric sensors by Manolis, A., Chatzianagnostou, E., Dabos, G., Pleros, N., Chmielak, B., Giesecke, A.L., Porschatis, C., Cegielski, P. J., Markey, L., Weeber, J.C., Dereux, A., Tsiokos, D.

    “…We demonstrate an interferometric plasmo-photonic sensor based on Si 3 N 4 photonic waveguides and gold Surface Plasmon Polariton waveguides. The proposed…”
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    Conference Proceeding
  13. 13

    TM grating couplers for low-loss LPCVD based Si3N4 waveguide platform by Dabos, G., Manolis, A., Giesecke, A. L., Porschatis, C., Chmielak, B., Wahlbrink, T., Pleros, N., Tsiokos, D.

    “…We demonstrate TM grating couplers for LPCVD silicon nitride platform with coupling loss of 6.5dB at 1541nm and 1dB bandwidth of 55nm employing optical…”
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    Conference Proceeding
  14. 14

    Gold based plasmonic stripes co-integrated with low loss Si3N4 platform in aqueous environment by Manolis, A., Dabos, G., Ketzaki, D., Chatzianagnostou, E., Tsiokos, D., Markey, L., Weeber, J.C., Dereux, A., Giesecke, A.L., Porschatis, C., Chmielak, B., Pleros, N.

    “…We demonstrate a butt-coupled interface between LPCVD Si 3 N 4 and gold based plasmonic waveguides in aqueous environment, exhibiting 2.3dB coupling loss and…”
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    Conference Proceeding