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Showing 1 to 3 of 3 for “"Boltzmann type transport equation"”.

  1. Part I. Proximity Effect: Numerical Evaluation of T(c). Part Ii. Derivation of Boltzmann Type Transport Equation for an Impure Anisotropicsuperconductor

    Made available in DSpace on 2015-05-12T21:41:43Z (GMT). No. of bitstreams: 2 license.txt: 4848 bytes, checksum: 96035ab3f5e1c23cc7138a224ce498bd (MD5) 6801888.PDF: 2664055 bytes, checksum: af69f5fa790a7df9a7e5b3d81ac0f754 (MD5) Previous issue date: 1967

    uiuc Repository record for Part I. Proximity Effect: Numerical Evaluation of T(c). Part Ii. Derivation of Boltzmann Type Transport Equation for an Impure Anisotropicsuperconductor (opens in a new tab)

  2. Part I: Proximity effect; numerical evaluation of Tc. Part II: Derivation of Boltzmann type transport equation for an impure anisotropic superconductor

    De Gennes' equation for the gap parameter in superposed films of normal and superconducting materials have been s9lved via a numerical technique. Thia is based upon a variation approach used by Silvert and Cooper. The solution indicates that the approximate anlytical procedure used by Werthamer is …

    uiuc Repository record for Part I: Proximity effect; numerical evaluation of Tc. Part II: Derivation of Boltzmann type transport equation for an impure anisotropic superconductor (opens in a new tab)

  3. Nonlinear transport in semiconductor superlattices

    "We develop a semiclassical balance equation model for transport through a single miniband of a semiconductor superlattice subject to a spatially uniform, time-dependent external electric field and/or a constant external magnetic field. The balance equations are derived from the semiclassical …

    uiuc Repository record for Nonlinear transport in semiconductor superlattices (opens in a new tab)