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Nanoscale Science and Technology summarizes six years of active
research sponsored by NATO with the participation of the leading
experts.The book provides an interdisciplinary view of several
aspects of physics at the atomic scale. It contains an overview of
the latest findings on the transport of electrons in nanowires and
nanoconstrictions, the role of forces in probe microscopy, the
control of structures and properties in the nanometer range,
aspects of magnetization in nanometric structures, and local probes
for nondestructive measurement as provided by light and metal
clusters near atomic scales.
Optics at the Nanometer Scale: Imaging and Storing with Photonic
Near Fields deals with the fundamentals of and the latest
developments and applications of near-field optical microscopy,
giving basic accounts of how and under what circumstances
superresolution beyond the half- wavelength Rayleigh limit is
achieved. Interferometric and fluorescence techniques are also
described, leading to molecular and even atomic resolution using
light. The storage of optical information at this level of
resolution is also addressed.
Nanoscale Science and Technology summarizes six years of active
research sponsored by NATO with the participation of the leading
experts. The book provides an interdisciplinary view of several
aspects of physics at the atomic scale. It contains an overview of
the latest findings on the transport of electrons in nanowires and
nanoconstrictions, the role of forces in probe microscopy, the
control of structures and properties in the nanometer range,
aspects of magnetization in nanometric structures, and local probes
for nondestructive measurement as provided by light and metal
clusters near atomic scales.
Optics at the Nanometer Scale: Imaging and Storing with Photonic
Near Fields deals with the fundamentals of and the latest
developments and applications of near-field optical microscopy,
giving basic accounts of how and under what circumstances
superresolution beyond the half- wavelength Rayleigh limit is
achieved. Interferometric and fluorescence techniques are also
described, leading to molecular and even atomic resolution using
light. The storage of optical information at this level of
resolution is also addressed.
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