A simple empirical formulation of electron emission from cesiated metal surfaces
Empirical converter surface physics formulation for electron emission current density analysis on cesiated metal surface
Engineering topics
Publications and source records attributed to Smith, J. R..
Empirical converter surface physics formulation for electron emission current density analysis on cesiated metal surface
Electron emission formulation for cesiated metal surfaces in thermionic converter in terms of work function, using Swanson-Strayer correlation
Electron work functions, surface potentials, and electron number density distributions and electric fields in the surface region of 26 metals were calculated from first principles within the free electron model. Calculation proceeded from an expression of the total energy as a functional of the electron number density, including exchange and correlation energies, as well as a first inhomogeneity term. The self-consistent solution was obtained via a variational procedure. Surface barriers were due principally to many-body effects; dipole barriers were small only for some alkali metals, becoming quite large for the transition metals. Surface energies were inadequately described by this model, which neglects atomistic effects. Reasonable results were obtained for electron work functions and surface potential characteristics, maximum electron densities varying by a factor of over 60.
Statistical theory of inhomogeneous gas
Fast neutron beam irradiation facility in Plum Brook Reactor
Electron work function of metal immersed in gas for cesium thermionic diode application