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- W2063076886 abstract "Particle-in-cell/Monte Carlo Collision (PIC/MCC) algorithms comprise a numerical model to assess the discharge characteristics of an RF plasma microthruster concept that exploits an RF capacitively coupled discharge (RFCCD) to heat a propellant. The eects of heat transfer between the discharge and the neutral species on microthruster performance are discussed. Heat transfer within the plasma discharge has been shown to greatly aect the discharge characteristics and thruster performance. Increasing the neutral temperature reduces the amount of power transmitted into the uid through a reduction of the neutral density, and thus reduces eectiv eness of the discharge. The PIC/MCC modeling showed that the power transmitted into the uid increases faster than linear with respect to an increase in applied potential, but the total power absorbed increases on the order of a linear trend. The power transmission eciency is found to be directly proportional to the applied potential, making the discharge more ecien t at higher voltages. The theoretical specic impulse also increases as the applied potential or discharge pressure is increased." @default.
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- W2063076886 date "2008-07-21" @default.
- W2063076886 modified "2023-10-05" @default.
- W2063076886 title "Plasma-Neutral Heat Transfer in Coaxial RF Argon Discharges" @default.
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- W2063076886 doi "https://doi.org/10.2514/6.2008-5192" @default.
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