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Partial Model of Insulator/Insulator Contact ChargingTwo papers present a two-phase equilibrium model that partly explains insulator/ insulator contact charging. In this model, a vapor of ions within a gas is in equilibrium with a submonolayer of ions of the same species that have been adsorbed on the surface of an insulator. The surface is modeled as having localized states, each with a certain energy of adsorption for an ion. In an earlier version of the model described in the first paper, the ions do not interact with each other. Using the grand canonical ensemble, the chemical potentials of both vapor and absorbed phases are derived and equated to determine the vapor pressure. If a charge is assigned to the vapor particles (in particular, if single ionization is assumed), then the surface charge density associated with adsorbed ions can be calculated as a function of pressure. In a later version of the model presented in the second paper, the submodel of the vapor phase is extended to include electrostatic interactions between vapor ions and adsorbed ones as well as the screening effect, at a given distance from the surface, of ions closer to the surface. Theoretical values of this model closely match preliminary experimental data on the discharge of insulators as a function of pressure.
Document ID
20110015114
Acquisition Source
Kennedy Space Center
Document Type
Other - NASA Tech Brief
Authors
Hogue, Michael
(NASA Kennedy Space Center Cocoa Beach, FL, United States)
Calle, C. I.
(NASA Kennedy Space Center Cocoa Beach, FL, United States)
Buhler, C. R.
(NASA Kennedy Space Center Cocoa Beach, FL, United States)
Mucciolo, E. R.
(University of Central Florida Orlando, FL, United States)
Date Acquired
August 25, 2013
Publication Date
September 1, 2005
Publication Information
Publication: NASA Tech Briefs, September 2005
Subject Category
Man/System Technology And Life Support
Report/Patent Number
KSC-12722
Distribution Limits
Public
Copyright
Public Use Permitted.
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