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This book covers various aspects of lasers in materials science,
including a comprehensive overview on basic principles of
laser-materials interactions and applications enabled by pulsed
laser systems. The material is organized in a coherent way,
providing the reader with a harmonic architecture. While
systematically covering the major current and emerging areas of
lasers processing applications, the Volume provides examples of
targeted modification of material properties achieved through
careful control of the processing conditions and laser irradiation
parameters. Special emphasis is placed on specific strategies aimed
at nanoscale control of material structure and properties to match
the stringent requirements of modern applications. Laser
fabrication of novel nanomaterials, which expands to the domains of
photonics, photovoltaics, sensing, and biomedical applications, is
also discussed in the Volume. This book assembles chapters based on
lectures delivered at the Venice International School on Lasers in
Materials Science which was held in Isola di San Servolo, Venice,
Italy, in July, 2012.
The book covers recent advances and progress in understanding both
the fundamental science of lasers interactions in materials
science, as well as a special emphasis on emerging applications
enabled by the irradiation of materials by pulsed laser systems.
The different chapters illustrate how, by careful control of the
processing conditions, laser irradiation can result in efficient
material synthesis, characterization, and fabrication at various
length scales from atomically-thin 2D materials to microstructured
periodic surface structures. This book serves as an excellent
resource for all who employ lasers in materials science, spanning
such different disciplines as photonics, photovoltaics, and
sensing, to biomedical applications.
The book covers recent advances and progress in understanding both
the fundamental science of lasers interactions in materials
science, as well as a special emphasis on emerging applications
enabled by the irradiation of materials by pulsed laser systems.
The different chapters illustrate how, by careful control of the
processing conditions, laser irradiation can result in efficient
material synthesis, characterization, and fabrication at various
length scales from atomically-thin 2D materials to microstructured
periodic surface structures. This book serves as an excellent
resource for all who employ lasers in materials science, spanning
such different disciplines as photonics, photovoltaics, and
sensing, to biomedical applications.
This book covers various aspects of lasers in materials science,
including a comprehensive overview on basic principles of
laser-materials interactions and applications enabled by pulsed
laser systems. The material is organized in a coherent way,
providing the reader with a harmonic architecture. While
systematically covering the major current and emerging areas of
lasers processing applications, the Volume provides examples of
targeted modification of material properties achieved through
careful control of the processing conditions and laser irradiation
parameters. Special emphasis is placed on specific strategies aimed
at nanoscale control of material structure and properties to match
the stringent requirements of modern applications. Laser
fabrication of novel nanomaterials, which expands to the domains of
photonics, photovoltaics, sensing, and biomedical applications, is
also discussed in the Volume. This book assembles chapters based on
lectures delivered at the Venice International School on Lasers in
Materials Science which was held in Isola di San Servolo, Venice,
Italy, in July, 2012.
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