Simeon Furrer, Dirk Dahlhaus
ISIT 2005
The electric field transfer of charged toner particles across a gap has been investigated. Distributions in size and charge of spherical particles, as well as random placement, are allowed for in a computer simulation. The approximation of a semi-infinite slab model of toner on a substrate is used to derive some general trends. While a complete model would require consideration of nonspherical toner, polarization, and Van der Waals forces, the approach described here is in semi-quantitative agreement with visual observations and measurements of toner mass transfer as a function of field.
Simeon Furrer, Dirk Dahlhaus
ISIT 2005
Paul J. Steinhardt, P. Chaudhari
Journal of Computational Physics
Kafai Lai, Alan E. Rosenbluth, et al.
SPIE Advanced Lithography 2007
John C. Hart, Alan Norton
Electronic Imaging: Advanced Devices and Systems 1990