Search Results - "SCOTTI, R. E"

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  1. 1

    Integrated all-pass filters for tunable dispersion and dispersion slope compensation by Madsen, C.K., Lenz, G., Bruce, A.J., Cappuzzo, M.A., Gomez, L.T., Scotti, R.E.

    Published in IEEE photonics technology letters (01-12-1999)
    “…New integrated optical all-pass filters are presented that can be used for tunable dispersion compensation, dispersion slope compensation, and as building…”
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    Journal Article
  2. 2

    Etch-tuned ridged waveguide magneto-optic isolator by WOLFE, R, LIEBERMAN, R. A, FRATELLO, V. J, SCOTTI, R. E, KOPYLOV, N

    Published in Applied physics letters (29-01-1990)
    “…Isolation ratios as large as 3000 to 1 (−35 dB) at wavelengths near 1.55 μm have been measured on ridged waveguide Faraday rotation isolators. These are the…”
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    Journal Article
  3. 3

    Micromachining of integrated optical structures by HARRIOTT, L. R, SCOTTI, R. E, CUMMINGS, K. D, AMBROSE, A. F

    Published in Applied physics letters (23-06-1986)
    “…Three-dimensional features have been milled into optical materials by scanning a submicron focused gallium ion beam. Different shapes are obtained using…”
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    Journal Article
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    The challenges of packaging MEMS components for the all optical networks of the future by Ramsey, D.A., Basavanhally, N., Low, Y.L., Scotti, R.E., Bishop, D.J.

    “…Micro-optoelectromechanical systems (MOEMS) having valuable performance, size, and cost attributes offer novel solutions to the design of lightwave network…”
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    Conference Proceeding
  6. 6

    238238 micromechanical optical cross connect by Aksyuk, V A, Arney, S, Basavanhally, N R, Bishop, D J, Bolle, CA, Chang, C C, Frahm, R, Gasparyan, A, Gates, J V, George, R, Giles, C R, Kim, J, Kolodner, PR, Lee, T M, Neilson, D T, Nijander, C, Nuzman, C J, Paczkowski, M, Papazian, A R, Pardo, F, Ramsey, DA, Ryf, R, Scotti, R E, Shea, H, Simon, ME

    Published in IEEE photonics technology letters (01-01-2003)
    “…This letter describes a 238238 beam-steering optical cross connect constructed using surface micromachined mirrors. Its innovative optical configuration…”
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    Journal Article
  7. 7

    Micromachining of optical structures with focused ion beams by Harriott, L. R., Scotti, R. E., Cummings, K. D., Ambrose, A.F

    “…For the first generation of lightwave devices, semiconductor lasers and detectors have been used as discrete elements. As the technology continues to evolve,…”
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    Journal Article
  8. 8

    238 x 238 micromechanical optical cross connect by Aksyuk, V.A., Arney, S., Basavanhally, N.R., Bishop, D.J., Bolle, C.A., Chang, C.C., Frahm, R., Gasparyan, A., Gates, J.V., George, R., Giles, C.R., Kim, J., Kolodner, P.R., Lee, T.M., Neilson, D.T., Nijander, C., Nuzman, C.J., Paczkowski, M., Papazian, A.R., Pardo, F., Ramsey, D.A., Ryf, R., Scotti, R.E., Shea, H., Simon, M.E.

    Published in IEEE photonics technology letters (01-04-2003)
    “…This letter describes a 238/spl times/238 beam-steering optical cross connect constructed using surface micromachined mirrors. Its innovative optical…”
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    Journal Article
  9. 9

    Performance characteristics of a 1.5 mum single-frequency semiconductor laser with an external waveguide Braff reflector by Olsson, N A, Henry, C H, Kazarinov, R F, Lee, H J, Orlowsky, K J, Johnson, B H, Scotti, R E, Ackerman, D A, Anthony, P J

    Published in IEEE journal of quantum electronics (01-02-1988)
    “…Single-frequency operation of 1.5-mum semiconductor lasers was obtained by combining a regular Fabry-Perot laser to an external waveguide Bragg reflector. The…”
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    Journal Article
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    Performance characteristics of a 1.5 mu m single-frequency semiconductor laser with an external waveguide Bragg reflector by Anders, N A, Henry, C H, Kazarinov, R F, Lee, H J, Orlowsky, K J, Johnson, B H, Scotti, R E, Ackerman, D A, Anthony, P J

    Published in IEEE journal of quantum electronics (01-01-1988)
    “…Single-frequency operation of 1.5 mu m semiconductor lasers was obtained by combining a regular Fabry-Perot laser to an external waveguide Bragg reflector. The…”
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    Journal Article
  12. 12

    A multi-port add/drop router using UV-induced gratings in planar waveguides by Madsen, C.K., Adams, L.E., Scotti, R.E., Bruce, A.J., Capuzzo, M.A., Gomez, L.T., Laskowski, E.J.

    “…A low-loss, reconfigurable add/drop multiplexer that can route channels between two fibers is presented. Hitless switching is demonstrated on a two-channel…”
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    Conference Proceeding
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