ANALYTIC CONSIDERATIONS RELATED TO THE LEWIS TYPE BOMBARDMENT ION ENGINE
Plasma theory of lewis type bombardment ion engine
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Plasma theory of lewis type bombardment ion engine
Two-component microbalance for measuring forces on ion-bombarded surfaces
Cathode durability tests in mercury electron bombardment ion thrustor
Two-dimensional hexagonal boron nitride (hBN) is attractive for several emerging applications. Ion bombardment can be used to modify the hBN properties. However, the understanding of radiation damage buildup in hBN remains limited. Here, we investigate the effects of the dose rate and ion mass on radiation damage buildup by studying 40 nm-thick hBN films bombarded at room temperature with 500 keV 4 He, 15 N, 40 Ar, and 129 Xe ions and comparing with results for ion bombardment of polycrystalline hBN ceramics. Raman spectroscopy is used to quantify damage buildup, and transmission electron microscopy is used for microstructural analysis. Experiments are complemented by molecular dynamics simulations of the formation and evolution of point defects. Lighter ions are found to be more efficient at disordering hBN than heavier ions. This observation points to a critical role of intracascade defect processes. In contrast, a negligible dose rate effect observed suggests limited intercascade defect dynamic annealing processes for these irradiation conditions. These findings provide a fundamental basis for hBN defect engineering.
Cesium bombardment ion engine performance, giving starting circuit and automatic discharge power control system
Sputtering effects of ion bombardment on optical properties of metal surfaces
Discharge chamber performance optimization for mercury bombardment ion thrusters
Ion bombardment effects on single crystal defect production studied with X ray methods
An electron-bombardment ion thruster of the SERT 2 type was operated with xenon, krypton, argon, neon, nitrogen, helium, and carbon dioxide. The discharge performance with xenon, krypton, and argon was similar to that obtained previously with mercury. Mass spectrometer data indicated that the xenon contained no significant multiple ionization. Restriction of the beam area, with an associated decrease in discharge potential, was necessary to reduce multiple ionization with argon to a negligible level. This modification also resulted in more stable operation of the thruster. Performance with the remaining gases was poor because the basic thruster designed was optimized for operation with mercury.
Two-component null-type microbalance for measurement of forces on ion bombarded surface
Estimation of gross performance characteristics of low density electron bombardment ion source
Acceleration grid erosion relation to plasma nonuniformity in electron bombardment ion engine, based on ion density and beam distribution
Damage produced on surface of metal single crystals during ion bombardment
Discharge chamber studies for mercury bombardment ion thrustors - discharge properties effects on magnetic field configuration, cathode location and type, and method of propellant introduction
Adhesion of nickel using ion bombardment and heating-cleaning technique
High current electron bombardment ion source for production of low energy ion beams without metastable contamination
Low frequency plasma noise from mercury electron bombardment ion thrustor studied for several magnetic field configurations
Performance and design of the lewis-type electron bombardment ion engine