Search Results - "Oti, J.O."

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  1. 1

    Size effects in submicron NiFe/Ag GMR devices by Russek, S.E., Cross, R.W., Sanders, S.C., Oti, J.O.

    Published in IEEE transactions on magnetics (01-11-1995)
    “…We have measured the magnetoresistive response of submicron NiFe/Ag giant magnetostrictive (GMR) devices as a function of current density and field angle. In…”
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    Journal Article
  2. 2

    Magnetoresistance of thin-film NiFe devices exhibiting single-domain behavior by Cross, R.W., Oti, J.O., Russek, S.E., Silva, T., Kim, Y.K.

    Published in IEEE transactions on magnetics (01-11-1995)
    “…Rectangular NiFe stripes as small as 1/spl times/5 /spl mu/m were fabricated and characterized as a function of film thickness. Gold current leads were…”
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    Journal Article Conference Proceeding
  3. 3

    Micromagnetic simulations of magnetoresistive behavior of sub-micrometer spin-valve MRAM devices by Oti, J.O., Russek, S.E.

    Published in IEEE transactions on magnetics (01-09-1997)
    “…The effects of device shape and size on the giant magnetoresistive (MR) response of NiFe/sub 7.5 nm//Co/sub 0.6 nm//Cu/sub 3 nm//Co/sub 0.6 nm//NiFe/sub 7.5…”
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    Journal Article
  4. 4

    Switching characteristics of spin valve devices designed for MRAM applications by Russek, S.E, Oti, J.O, Kim, Young K

    “…The low-frequency performance of spin valve giant magnetoresistive devices, designed for digital applications, has been examined as a function of device line…”
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    Journal Article Conference Proceeding
  5. 5

    Numerical micromagnetic techniques and their applications to magnetic force microscopy calculations by Oti, J.O.

    Published in IEEE transactions on magnetics (01-11-1993)
    “…Numerical micromagnetics is a flexible and powerful means of designing and characterizing magnetic devices. An overview of numerical methods of solution of…”
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    Journal Article Conference Proceeding
  6. 6
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    A personal computer based semi-analytical micromagnetics design tool by Oti, J.O., Kim, Y.K., Suvarna, S.

    Published in IEEE transactions on magnetics (01-09-1997)
    “…A personal computer based semi-analytical micromagnetics design tool is described. The program enables the flexible modeling of systems of interacting…”
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    Journal Article
  8. 8

    Field angle and current density effects in submicrometer spin valves for digital applications by Russek, S.E., Oti, J.O., Kim, Y.K., Cross, R.W.

    Published in IEEE transactions on magnetics (01-09-1997)
    “…We have characterized the magnetoresistive response of giant magnetoresistive spin valve devices, designed for digital applications, as a function of current…”
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    Journal Article
  9. 9

    A micromagnetic model of dual-layer magnetic-recording thin films by Oti, J.O.

    Published in IEEE transactions on magnetics (01-03-1993)
    “…The micromagnetic model, which is capable of simulating magnetic layers having different magnetic and geometric properties, is applied to the study of the…”
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    Journal Article
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  11. 11

    Simulated magnetoresistive behavior of geometrically asymmetric spin valves by Oti, J.O., Cross, R.W., Russek, S.E., Kim, Y.K.

    Published in IEEE transactions on magnetics (01-09-1996)
    “…A semi-analytical micromagnetic model is used to study how the magnetoresistive (MR) response is affected by uneven geometries in NiFe/Cu/NiFe spin-valve…”
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    Journal Article
  12. 12

    Identifying phenomenological magnetoresistive properties of spin valves by Oti, J.O., Kim, Y.K., Shand, P.M.

    Published in IEEE transactions on magnetics (01-09-1996)
    “…A methodology for identifying essential magnetoresistive parameters of spin valves is presented. The method uses a formulation of the magnetoresistance of a…”
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    Journal Article
  13. 13

    Models of granular giant magnetoresistance multilayer thin films by Oti, J.O., Russek, S.E., Sanders, S.C., Cross, R.W.

    Published in IEEE transactions on magnetics (01-03-1996)
    “…Phenomenological micromagnetic and large-scale magnetization-dependent models of resistivity that produce giant magnetoresistance in granular multilayer…”
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    Journal Article
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