Search Results - "Gilmore, C.M."

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    Effect of aluminum doping on zinc oxide thin films grown by pulsed laser deposition for organic light-emitting devices by Kim, H, Piqué, A, Horwitz, J.S, Murata, H, Kafafi, Z.H, Gilmore, C.M, Chrisey, D.B

    Published in Thin solid films (01-12-2000)
    “…Transparent conducting aluminum-doped zinc oxide (AZO) thin films have been deposited on glass substrates by pulsed laser deposition. The structural,…”
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    Journal Article
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    Critical dimensions for YBCO islands grown by pulsed laser deposition by Gilmore, C.M., Kim, J.

    “…Islands of constant width at half maximum of approximately 100 nm have been observed during the pulsed laser deposition of films of nominal thickness from 0.7…”
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    Journal Article
  5. 5

    Molecular dynamics simulations of film-substrate interface mixing in the energetic deposition of fcc metals by Sprague, J.A., Gilmore, C.M.

    Published in Thin solid films (15-01-1996)
    “…Embedded-atom-method molecular dynamic simulations have been performed to examine the interface mixing produced by deposition of fcc metals on fcc metal…”
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    Journal Article
  6. 6

    Ion beam deposition of 107Ag(111) films on Ni(100) by Todorov, S.S., Bu, H., Boyd, K.J., Rabalais, J.W., Gilmore, C.M., Sprague, J.A.

    Published in Surface science (01-06-1999)
    “…Monolayer thick silver films were grown on an Ni(100) surface using direct ion beam deposition of 107Ag + ions with 20 eV kinetic energy and the substrate at…”
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    Journal Article
  7. 7

    Interface mixing of energetic metals deposited onto metals by Gilmore, C.M., Sprague, J.A.

    Published in Surface & coatings technology (01-09-1996)
    “…Experimental studies of ion beam mixing have indicated that the extent of mixing is sensitive to the heat of mixing of the two atom types. Analytical studies…”
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    Journal Article Conference Proceeding
  8. 8

    Computer modeling the deposition of nanoscale thin films by Gilmore, C.M., Sprague, J.A.

    Published in Nanostructured materials (1997)
    “…The embedded atom method for simulating the deposition of thin films with nanoscale dimensions will be reviewed and this technique will be compared with some…”
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    Journal Article