A critical but still poorly understood process in metal-oxide-semiconductor held-effect transistors (MOSFETs) is stress-induced changes in device threshold voltage, channel conductance, etc.
A theory of nonlinear signal propagation in multi-span wavelength division multiplexed coherent transmission systems that employ the semiconductor optical amplifier as in-line amplifiers is present
Fundamental differential equations are derived under the unrestricted approximation of electrical neutrality that admits trapping. Extension is made for applied magnetic field.
It has been recognized for several years that a major problem in the transmission of circular electric waves through multimode round waveguides is the question of negotiating bends.
In this paper a theory is developed for the Double Heterostructure Opto-Electronic Switching device (DOES).
A general theory is presented for electrooptic shock (Cerenkov) radiation in transparent crystals having a linear electrooptic effect.
Theoretical investigations of FM receivers with analog input signals date back to J. R. Carson and T. C. Fry, 1 and to M. G. Crosby.
Lasers used for coherent optical communication exhibit phase instabilities which are modeled by including a Brownian motion phase noise term on the carrier.
Linearized Augmented Plane Wave calculations of the structural energies of a H-monolayer adsorbed on a Pt(111) film predict a fcc site, an H-Pt bond length of 1.86 angstrom, a symmetric stretch vib
Self-consistent Linear Augmented Plane Wave total energy calculations have been carried out for a 1x1 H monolayer on the Ru(0001) surface.