Interaction Between Ion Beams and Plasmas
Stability limits for ion acoustic waves due to interaction between low energy cesium ion beam and thermal cesium plasma
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Stability limits for ion acoustic waves due to interaction between low energy cesium ion beam and thermal cesium plasma
Radioactive tracer technique to measure yield and angular distribution of copper sputtered from monocystalline target subject to cesium ion bombardment
Cesium ion and neutral emission from pure and alloyed porous metal ionizers measured as function of noncosine angular distribution
Charge exchange collisions in ground state and ionic hydrogen incident on cesium vapor, measuring beam components after passage through target
Comparison of electromagnet and permanent magnet versions of electron bombardment cesium ion engine
Heats of adsorption of sodium, rubidium, and cesium ions on tungsten substrate
Radioactive tracer technique to measure yield and angular distribution of cesium ion sputtered copper
Large porous tungsten sources of cesium ions - ionizer performance at high current densities and relation of performance to physical properties
Radioactive tracer technique to measure yield and angular distribution of copper sputtered from monocrystalline target subject to cesium ion bombardment
Cesium ion emission patterns from rear-fed porous refractory metals studied by thermal emission microscope
Radio frequency noise radiation propagation from electrostatic cesium ion engine
Radioactive tracer technique for measurement of yield and angular distribution of molybdenum sputtered by cesium ion beam
Propellant feed systems for ion engines, cesium hydride system
A method of calculating a relation for the critical surface temperature for ion current emission is presented. The method is based on the S-shaped electron emission curves for surfaces in the presence of ionizable vapors and upon the assumptions of thermodynamic equilibrium involved in the Saha-Langmuir relation. A comparison of the critical temperatures so calculated with the relation obtained from actual ion emission data on the cesium-tungsten system shows good agreement over a wide current density range. Critical temperatures for cesium ion current densities of 0.21 and 1.9 amperes per square centimeter calculated by this method are presented for surfaces of rhenium, molybdenum, tantalum, and niobium. Tentative relations of the form log j equals A (sub p) plus (B (sub p) over T) are presented for these same systems, where j is the ion current density, A (sub p) and B (sub p) are constants, and T is the temperature.
Experimental study of an electron bombardment ion motor using cesium as an expellant
Cesium ion emission of porous tungsten materials
Development and performance of cesium ion engines for satellite control, noting lifetime, fuel consumption reliability, thrust vector control, etc
Ion generation and recombination mechanisms in the cesium plasma as they pertain to the advanced mode thermionic energy converter were studied. The decay of highly ionized cesium plasma was studied in the near afterglow to examine the recombination processes. Very low recombination in such a plasma may prove to be of considerable importance in practical converters. The approaches of external cesium generation were vibrationally excited nitrogen as an energy source of ionization of cesium ion, and microwave power as a means of resonant sustenance of the cesium plasma. Experimental data obtained so far show that all three techniques - i.e., the non-LTE high-voltage pulsing, the energy transfer from vibrationally excited diatomic gases, and the external pumping with a microwave resonant cavity - can produce plasmas with their densities significantly higher than the Richardson density. The implication of these findings as related to Lam's theory is discussed.