The Selection of Simple Model Atoms for Calculations of Electron Density in Nonequilibrium, Low Temperature Cs Plasmas
Simple model atoms for calculations of electron density in nonequilibrium, low temperature cesium plasmas
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Simple model atoms for calculations of electron density in nonequilibrium, low temperature cesium plasmas
Simple model atom selection for electron density calculation in low temperature nonequilibrium Cs plasmas
Free electron number densities calculated for cesium plasmas with low electron energy
HF flute unstable oscillations occurring when low temperature plasma is added to high temperature one, finding frequency and growth rate are of order of cyclotron harmonic frequency
Ionization equilibrium and radiative cooling of high temperature low density plasma, noting cosmic gas cooling curve of line emission from oxygen ion transitions
Research projects in materials engineering and science, and solid state, plasma, and low temperature physics
Superconductive magnets for use in advanced space and power propulsion systems, and research in solid-state, plasma, and low temperature physics
Measurement of low frequency impedance of Langmuir probe in plasma to obtain electron density and temperature
Variation of electron temperature and number density, ion current density and plasma potential through low density Hall current ion accelerator as function of magnetic field strength
Low temperature ashing of human feces for solid waste management onboard spacecraft
Shock wave structure in recombining low density plasma flow, noting electron density and temperature distributions
Space related studies in low temperature physics, semiconductor properties, astrophysics, atomic physics, and plasma physics
Plasma electron density and temperature from measurement of LF impedance of Langmuir probe, noting ionospheric probing
Plasma potential, ion current density, and electron temperature and number density measurements for Hall current ion accelerator
The interaction of a large‐amplitude disturbing wave with a thermally generated, highly ionized cesium plasma has been investigated using a small‐amplitude sensing wave as a probe. The subsequent interaction between the disturbing and sensing waves is related to the plasma electron temperature. The plasma was contained in a magnetic field of 500–1000 G and had an electron plasma frequency near 10 GHz and an electron gyromagnetic frequency around 2 GHz. The sensing wave was a 10 GHz plane wave of approximately 1.5 mW input power and the disturbing wave was 7.5 GHz plane wave of about 1.2 W peak power. Measurements of the sensing‐wave transmitted power were made using standard microwave techniques. A notch filter in the sensing‐wave receiving circuit reduced the scattered disturbing‐wave interference to an immeasurably low level. Langmuir probes were used to detect disturbing‐wave modulation and to measure plasma temperatures and densities. Measurements of the interaction were correlated with a solution of the Boltzmann transport equation for a perturbed Maxwellian distribution function with binary Coulomb collisions.
Microwave discharge technique for depositing noncrystalline oxide films of silicon, germanium, boron, titanium and selenium on substrates by decomposing compounds by oxygen plasma
Measured and theoretical stark-broadened line profiles and asymptotic wing approximation of hydrogen Balmer lines at specific electron density and temperature
Low energy electrons in magnetosphere from OGO-1 and OGO-3 observations, discussing plasma sheet, magnetic bay activity, electron pressure, temperature and density gradient