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  • 1
    Electronic Resource
    Electronic Resource
    [S.l.] : American Institute of Physics (AIP)
    Journal of Applied Physics 74 (1993), S. 5569-5574 
    ISSN: 1089-7550
    Source: AIP Digital Archive
    Topics: Physics
    Notes: The existing models of the current flow across planar-doped-barrier (PDB) diodes are based on thermionic emission over the triangular barriers and have successfully predicted the characteristics of diodes with low barriers. However, experimental measurements on planar-doped-barrier (PDB) electron emitters suggest that tunneling can be the dominant transport mechanism across PDB structures with high built-in fields. In this work, we propose a model that takes into account the quantum mechanical effects of the scattering across the barrier and the tunneling through the energy band gap. Good agreement between the theory and experiments has been obtained.
    Type of Medium: Electronic Resource
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  • 2
    Publication Date: 2016-04-28
    Description: In a dielectric tube partially surrounded by distilled water, a propagating discontinuity is observed in a cold argon plasma jet at atmospheric pressure in both the laminar and turbulent flow regimes. Through electrical and optical diagnostics, the mechanism of formation for this phenomenon is investigated. Results show that the strong polarization of the distilled water, the constraint from the electric field (or a sufficiently high electric field), and the transport of the active species are in combination responsible for the propagating plasma discontinuity. Indeed, smaller surface areas of the tube surrounded by distilled water, shorter distances between the distilled water and the ground electrodes, as well as larger gas flow rates can together make the discontinuous discharge channel appear more readily. In particular, when the flow switches from laminar to turbulent, the plasma behavior of the discontinuity no longer depends on the gas flow rate. This is mostly attributed to the extreme instability of turbulence which further suppresses the transport of active species.
    Print ISSN: 0021-8979
    Electronic ISSN: 1089-7550
    Topics: Physics
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