Search Results - "MCLEAN, W. L"

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    Absence of superconductivity in metallic granular aluminum by KUNCHUR, M, LINDENFELD, P, MCLEAN, W. L, BROOKS, J. S

    Published in Physical review letters (14-09-1987)
    “…Granular Al near the metal--insulator transition has been found to have a range of metal concentrations over which it is metallic (M) but not superconducting…”
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    Localization and Electron-Interaction Effects in the Magnetoresistance of Granular Aluminum by Chui, T., Lindenfeld, P., McLean, W. L., Mui, K.

    Published in Physical review letters (30-11-1981)
    “…Measurements of the magnetoresistance are reported for a series of granular Al specimens on the metal side of the metal--insulator transition. A clear…”
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    Recovery of original superconducting properties in ion-irradiated Y1Ba2Cu3O7-x thin films by VADLAMANNATI, S, ENGLAND, P, STOFFEL, N. G, RAMESH, R, RAVI, T. S, HWANG, D. M, FINDIKOGLU, A, LI, Q, VENKATESAN, T, MCLEAN, W. L

    Published in Applied physics letters (19-11-1990)
    “…The changes in the superconducting properties of in situ pulsed laser deposited Y1Ba2Cu3O7−x thin films caused by irradiation with 200 keV He+ ions are due to…”
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    Magnetic susceptibility of superconducting granular aluminum by Gershenson, M., McLean, W. L.

    Published in Journal of low temperature physics (01-04-1982)
    “…Measurements have been made of the magnetic susceptibility of samples of superconducting granular Al with different metal volume fractions. The penetration…”
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    Magnetoresistance maximum at the metal-insulator transition of granular aluminum by SIN, H. K, LINDENFELD, P, MCLEAN, W. L

    Published in Physical review. B, Condensed matter (01-10-1984)
    “…As the composition of granular Al is varied the fractional negative magnetoresistance goes through a max. at the metal /insulator transition. A decrease in…”
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    Conduction in granular aluminum near the metal-insulator transition by Chui, T., Deutscher, G., Lindenfeld, P., McLean, W. L.

    Published in Physical review. B, Condensed matter (01-06-1981)
    “…The electrical resistance has been measured on granular Al specimens with room-temperature resistivities between 1.5 x 10 -- 3 and 1.3 x 10 -- 1 Omega cm, from…”
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    Localization and electron-interaction contributions to the magnetoresistance in three-dimensional metallic granular aluminum by MUI, K. C, LINDENFELD, P, MCLEAN, W. L

    Published in Physical review. B, Condensed matter (01-09-1984)
    “…Magnetoresistance measurements have been made on three-dimensional granular Al specimens with room-temp. resistivities rho sub RT between 300 and 6000 mu Omega…”
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    Quasireentrant superconductivity near the metal-insulator transition of granular aluminum by KUNCHUR, M, ZHANG, Y. Z, LINDENFELD, P, MCLEAN, W. L, BROOKS, J. S

    Published in Physical review. B, Condensed matter (01-09-1987)
    “…Incomplete superconducting transitions, often called quasireentrant, have been observed in the resistivity of three-dimensional granular Al very close to the…”
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    Refractory-superconductor S - N - S microbridges by van Dover, R. B., de Lozanne, A., Howard, R. E., McLean, W. L., Beasley, M. R.

    Published in Applied physics letters (01-11-1980)
    “…We have successfully fabricated Nb-Au-Nb planar proximity-effect microbridges and increased our understanding of their behavior through the use of simple…”
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    Superconductivity in ion-beam-mixed layered Au-Si thin films by JISRAWI, N. M, MCLEAN, W. L, GEBALLE, T. H, STOFFEL, N. G, HEGDE, M. S, CHANG, C. C, HART, D. L, HWANG, D. M, RAVI, T. S, WILKENS, B. J, SUN, J. Z

    Published in Physical review. B, Condensed matter (01-04-1991)
    “…The superconducting properties of thin films made by mixing alternating layers of Au and Si using ion-beam bombardment correlate with the formation of…”
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    Superconductivity in inhomogeneous granular metals by McLean, W. L.

    Published in Physical review. B, Condensed matter (01-07-1980)
    “…A model of elongated metal ellipsoids imbedded in a granular metal is treated by an effective medium approach to explain the observed temperature dependence of…”
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