Recent data from ground and space experiments indicate that plasma releases from an object dramatically reduce the sheath impedance between the object and the ambient plasma surrounding it. Available data is in qualitative accord with the theory developed to quantify the flow of current in the sheath. Electron transport in the theory is based on a fluid model of a collisionless plasma with an effective collision frequency comparable to frequencies of plasma oscillations. The theory leads to low effective impedances varying inversely with the square root of the injected plasma density. To support such a low impedance mode of operation using an argon plasma source, for example, requires that only one argon ion be injected for each thirty electrons extracted from the ambient plasma. The required plasma flow rates are quite low; to extract one ampere of electron current requires a mass flow rate of about one gram of argon per day.


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    Title :

    Theory of plasma contactors for electrodynamic tethered satellite systems


    Contributors:
    Parks, D. E. (author) / Katz, I. (author)


    Publication date :

    1987-06-01



    Type of media :

    Miscellaneous


    Type of material :

    No indication


    Language :

    English





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