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Spectroscopic studies of chemical kinetics, on picosecond and shorter time scales, involve short optical pulses, often of high field strength.

We have calculated the spatial and electron energy structure for short pulse, high intensity multiphonon ionization taking into account saturation.

Saturation intensities have been measured for 25 transitions between excited states of argon, krypton, and neon in the 1.3 and 1.5micron regions.

Optical saturation experiments have been performed on hh1-hh2 intersubband transitions in two samples of p-doped GaAs/AlGaAs quantum wells.

We present a new and practical approach to show the correctness of high-level synthesis systems.

In recent years, multimedia applications and services, especially video, have suffered a sudden growth.

A new kind of surface acoustic wave (SAW) sensor has been developed in order to measure sub-atmospheric pressure below 100 mTorr with accuracy better than 0.1 mTorr.

A Surface Acoustic Wave (SAW) Pirani vacuum sensor has been fabricated on a lithium niobate substrate and mounted on a printed circuit board.

This paper deals with the research and development of a prototype of a planar electromagnetic sensor for use in nondestructive evaluation (NDE) of saxophone reeds.

Network densification appears to be a scalable means to address increasing traffic demands.