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Glasses containing metallic nanoparticles exhibit very promising linear and nonlinear optical properties, mainly due to the surface plasmon resonances (SPRs) of the nanoparticles. The spectral position in the visible and near-infrared range and polarization dependence of the SPR are characteristically determined by the nanoparticles’ shapes. The focus of Ultra-Short Pulsed Laser Engineered Metal-Glass Nanocomposites is the interaction of intense ultra-short laser pulses with glass containing silver nanoparticles embedded in soda-lime glass, and nanostructural modifications in metal-glass nanocomposites induced by such laser pulses. In order to provide a comprehensive physical picture of th...
Ultrafast Phenomena XIV presents the latest advances in ultrafast science, including ultrafast laser and measurement technology as well as studies of ultrafast phenomena. Pico-, femto-, and atosecond processes relevant in physics, chemistry, biology and engineering are presented. Ultrafast technology is now having a profound impact within a wide range of applications, among them imaging, material diagnostics, and transformation and high-speed optoelectronics. This book summarizes results presented at the 14th Ultrafast Phenomena Conference and reviews the state of the art in this important and rapidly advancing field.
Proceedings of SPIE present the original research papers presented at SPIE conferences and other high-quality conferences in the broad-ranging fields of optics and photonics. These books provide prompt access to the latest innovations in research and technology in their respective fields. Proceedings of SPIE are among the most cited references in patent literature.
Increasingly, novel optical and magnetic properties of nanoparticles and nanowires are finding rich opportunities in electronic, biological tagging, separation and sensing. This volume brings together a large and diverse group of international researchers to focus on the synthesis, processing, characterization and modeling of nanoparticles and nanowires and their potential use as 'nanoscale building blocks' for electronic, optical and biological applications. The compilation of papers reflects the drive to harness the understanding of isolated nanostructures, translating these insights into opportunities of engineered materials and devices. In addition to studies of individual nanostructures, the volume also explores how new collective properties emerge as nanoscale building blocks are assembled to produce extended structures. Experimental, theoretical and computational perspectives are offered. Topics include: magnetic nanostructures; metallic nanoparticles; metallic nanowires; magnetic and metallic nanostructures; semiconductor quantum dots; semiconductor dots and wires; nanobiological materials; and group-IV nanoparticles.
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