Thomas M. Cover
IEEE Trans. Inf. Theory
A challenging paradigm in the computational sciences is the coupling of the continuum, the atomistic and the quantum descriptions of matter for a unified dynamic treatment of a single physical problem. We described the achievement of such a goal. We have spanned the length scales in a concerted simulation comprising the finite-element method, classical molecular dynamics, quantum tight-binding dynamics and seamless bridges between these different physical descriptions. We illustrate and validate the methodology for crack propagation in silicon.
Thomas M. Cover
IEEE Trans. Inf. Theory
Khaled A.S. Abdel-Ghaffar
IEEE Trans. Inf. Theory
J.P. Locquet, J. Perret, et al.
SPIE Optical Science, Engineering, and Instrumentation 1998
Hendrik F. Hamann
InterPACK 2013