Buch, Englisch, 350 Seiten, Format (B × H): 155 mm x 235 mm
Bridging Quantum and Classical Engineering
Buch, Englisch, 350 Seiten, Format (B × H): 155 mm x 235 mm
Reihe: Lecture Notes in Nanoscale Science and Technology
ISBN: 978-3-032-35331-3
Verlag: Springer
This book examines the convergence of classical and quantum engineering at the nanoscale, where physical models begin to evolve under quantum effects. It presents a comprehensive perspective on how quantum phenomena can be understood, modeled, and applied within engineered systems, offering both theoretical and practical insights into this transitional regime.
Spanning topics from nanomaterials, interfaces, and quantum devices to fabrication methods, nano-optics, and biointerfaces, the chapters integrate foundational physics with design methodologies and experimental techniques that define modern nanoengineering. Contributions from across physics, materials science, and electrical engineering provide a unified view of how quantum and classical behaviors interact and overlap across scales. As quantum technologies advance and nanotechnologies mature, this book serves as a key reference for researchers and graduate students exploring the emerging continuum between the quantum and classical domains and the evolving principles that shape the next generation of engineering.
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Weitere Infos & Material
Entering the Nano Continuum An introduction to nanoscale science, engineering paradigms, and the transition between classical and quantum domains.- The Scale That Changes Everything Size effects, surface-to-volume ratios, and the breakdown of classical laws at the nanoscale.- Quantum Mechanics for Engineers Core quantum principle wave particle duality, tunneling, quantization, and uncertainty in the context of engineering.- Classical Models Reimagined at the Nanoscale Revisiting elasticity, heat transfer, and electrical conduction when scale-dependent effects emerge.- Engineered Atoms: Nanomaterials and Quantum Matter From fullerenes to 2D materials, exploring quantum behavior in engineered nanostructures.- Designing Interfaces Surfaces, Defects, and Grain Boundaries The pivotal role of interfaces and how atomic scale phenomena impact device performance.- Quantum Dots, Wells, and Wires Confined systems, energy quantization, and their engineering applications.




