Search Results - "Norberg, E.J."

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  1. 1

    Transmission Line Characterization of Undercut-Ridge Traveling-Wave Electroabsorption Modulators by Dummer, M.M., Klamkin, J., Norberg, E.J., Tauke-Pedretti, A., Raring, J.W., Coldren, L.A.

    Published in IEEE photonics technology letters (01-08-2008)
    “…An experimental analysis of the electrical properties of traveling-wave electroabsorption modulators with undercut waveguides is presented. Modulators of…”
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    Journal Article
  2. 2

    Highly Polarized Single-Chip ELED Sources Using Oppositely Strained MQW Emitters and Absorbers by Nicholes, S.C., Raring, J.W., Norberg, E.J., Wang, C.S., Dummer, M.M., DenBaars, S.P., Coldren, L.A.

    Published in IEEE photonics technology letters (15-07-2008)
    “…Integrated polarizer components with polarization extinctions 40 dB are desirable for state-of-the-art photonic integrated circuits. We demonstrate 60-dB…”
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    Journal Article
  3. 3

    Programmable Photonic Lattice Filters in InGaAsP-InP by Norberg, E.J., Guzzon, R.S., Nicholes, S.C., Parker, J.S., Coldren, L.A.

    Published in IEEE photonics technology letters (15-01-2010)
    “…A novel monolithic programmable optical lattice filter consisting of unit cell building blocks is proposed. Single unit cells incorporating a ring resonator in…”
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    Journal Article
  4. 4

    Programmable photonic filters fabricated with deeply etched waveguides by Norberg, E.J., Guzzon, R.S., Nicholes, S.C., Parker, J.S., Coldren, L.A.

    “…Novel monolithic programmable optical filters are proposed and demonstrated. Deeply-etched waveguides are used throughout. Unit cells, incorporating a ring…”
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    Conference Proceeding
  5. 5

    Novel application of quantum well intermixing implant buffer layer to enable high-density photonic integrated circuits in InP by Nicholes, S.C., Masanovic, M.L., Barton, J., Norberg, E.J., Lively, E., Jevremovic, B., Coldren, L.A., Blumenthal, D.J.

    “…We demonstrate a novel technique for free-carrier absorption reduction using an InP buffer layer with quantum well intermixing. Application of this technique…”
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    Conference Proceeding