By Peter W. Hawkes
Advances in Imaging and Electron Physics merges long-running serials--Advances in Electronics and Electron Physics and Advances in Optical and Electron Microscopy. This sequence beneficial properties prolonged articles at the physics of electron units (especially semiconductor devices), particle optics at low and high energies, microlithography, snapshot technology and electronic picture processing, electromagnetic wave propagation, electron microscopy, and the computing tools utilized in these kind of domain names. up to date with contributions from major foreign students and specialists Discusses scorching subject components and provides present and destiny study tendencies offers a useful reference and advisor for physicists, engineers and mathematicians
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Additional resources for Advances in Imaging and Electron Physics
2006). Influence of the carrier-envelope phase of few-cycle pulses on ponderomotive surface-plasmon electron acceleration. Physical Review Letters, 97, 146801. Jones, D. , Diddams, S. , Ranka, J. , Windeler, R. , Hall, J. , et al. (2000). Carrier-envelope phase control of femtosecond mode-locked lasers and direct optical frequency synthesis. Science, 288, 635–639. Keldysh, L. V. (1965). Ionization in the field of a strong electromagnetic wave. Soviet Physics Journal of Experimental and Theoretical Physics, 20, 1307.
The obsession with elaborate instrumentation handicapped scientists who too easily came to regard the limits of resolution as an uncrossable frontier, somewhat like the sound barrier. This is proving not to be the case. We can see objects that are not, in theory, amenable to resolution. It is recognized that dark-ground light microscopy can take the observer below the theoretical limits of resolution (Ford, 1970) and that sub-microscopic luminous objects can be visualized, even if they cannot strictly be resolved (Ford, 1968).
Physical Review Letters, 93, 184801. Irvine, S. , & Elezzabi, A. Y. (2006). Influence of the carrier-envelope phase of few-cycle pulses on ponderomotive surface-plasmon electron acceleration. Physical Review Letters, 97, 146801. Jones, D. , Diddams, S. , Ranka, J. , Windeler, R. , Hall, J. , et al. (2000). Carrier-envelope phase control of femtosecond mode-locked lasers and direct optical frequency synthesis. Science, 288, 635–639. Keldysh, L. V. (1965). Ionization in the field of a strong electromagnetic wave.
Advances in Imaging and Electron Physics by Peter W. Hawkes