Search Results - "Lifton, V."

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  1. 1

    Nanonails:  A Simple Geometrical Approach to Electrically Tunable Superlyophobic Surfaces by Ahuja, A, Taylor, J. A, Lifton, V, Sidorenko, A. A, Salamon, T. R, Lobaton, E. J, Kolodner, P, Krupenkin, T. N

    Published in Langmuir (01-01-2008)
    “…In this work, dynamically tunable, superlyophobic surfaces capable of undergoing a transition from profound superlyophobic behavior to almost complete wetting…”
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  2. 2

    Beam-steering micromirrors for large optical cross-connects by Aksyuk, V.A., Pardo, F., Carr, D., Greywall, D., Chan, H.B., Simon, M.E., Gasparyan, A., Shea, H., Lifton, V., Bolle, C., Arney, S., Frahm, R., Paczkowski, M., Haueis, M., Ryf, R., Neilson, D.T., Kim, J., Giles, C.R., Bishop, D.

    Published in Journal of lightwave technology (01-03-2003)
    “…This paper describes Si-micromachined two-axis beam-steering micromirrors and their performance in 256 /spl times/ 256- and 1024 /spl times/ 1024-port large…”
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  3. 3

    1100 × 1100 port MEMS-based optical crossconnect with 4-dB maximum loss by Kim, J, Nuzman, C.J, Kumar, B, Lieuwen, D.F, Kraus, J.S, Weiss, A, Lichtenwalner, C.P, Papazian, A.R, Frahm, R.E, Basavanhally, N.R, Ramsey, D.A, Aksyuk, V.A, Pardo, F, Simon, M.E, Lifton, V, Chan, H.B, Haueis, M, Gasparyan, A, Shea, H.R, Arney, S, Bolle, C.A, Kolodner, P.R, Ryf, R, Neilson, D.T, Gates, J.V

    Published in IEEE photonics technology letters (01-11-2003)
    “…We present a microelectromechanical systems-based beam steering optical crossconnect switch core with port count exceeding 1100, featuring mean fiber-to-fiber…”
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  4. 4
  5. 5

    Superhydrophobic membranes with electrically controllable permeability and their application to "smart" microbatteries by Lifton, V. A., Taylor, J. A., Vyas, B., Kolodner, P., Cirelli, R., Basavanhally, N., Papazian, A., Frahm, R., Simon, S., Krupenkin, T.

    Published in Applied physics letters (28-07-2008)
    “…Electrically tunable membranes with controllable permeability have been experimentally demonstrated by combining nanostructured and microstructured…”
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  6. 6

    Robust Si-Based Membranes for Fluid Control in Microbatteries Using Superlyophobic Nanostructures by Lifton, V A, Simon, S

    Published in Journal of microelectromechanical systems (01-02-2011)
    “…Mechanically robust superhydrophobic Si-based membranes are described. The membranes are prepared using microelectromechanical-systems-type processing and…”
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  7. 7

    Design and Fabrication of Addressable Microfluidic Energy Storage MEMS Device by Lifton, V. A., Simon, S., Holmqvist, J., Ebefors, T., Jansson, D., Svedin, N.

    Published in Journal of microelectromechanical systems (01-12-2012)
    “…Design and fabrication of microfluidic energy storage devices that are based on the control of the liquid electrolyte inside a power cell are presented. A…”
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  8. 8

    Stress control structures for microelectromechanical systems using structural mechanics approach by Krupenkin, T., Lifton, V. A., Tran, A., Vuillemin, J., Carr, D. W.

    Published in Applied physics letters (26-06-2006)
    “…A method of stress control in microelectromechanical systems (MEMS) devices is presented that consists of creating counterbalancing structures to position…”
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  9. 9

    Polyimide Spacers for Flip-Chip Optical MEMS by Lubecke, V.M., Pardo, F., Lifton, V.A.

    Published in Journal of microelectromechanical systems (01-08-2007)
    “…Multichip integration provides an attractive means to overcome space limitations for large-port-count optical microelectromechanical systems (MEMS) routing…”
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  10. 10
  11. 11

    Reserve battery architecture based on superhydrophobic nanostructured surfaces by Lifton, Victor A., Simon, Steve, Frahm, Robert E.

    Published in Bell Labs technical journal (2005)
    “…This letter presents the details of a novel battery architecture based on superhydrophobic nanostructured materials. Both electrodes of a battery are formed on…”
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