Nanotechnology for Microelectronics and Photonics

  • Format
  • Bog, hardback
  • Engelsk

Beskrivelse

Nanotechnology for Microelectronics and Photonics, Second Edition has been thoroughly revised, expanded, and updated. The aim of the book is to present the most recent advances in the field of nanomaterials, as well as the devices being developed for novel nanoelectronics and nanophotonic systems. It covers the many novel nanoscale applications in microelectronics and photonics that have been developed in recent years. Looking to the future, the book suggests what other applications are currently in development and may become feasible within the next few decades based on novel materials such as graphene, nanotubes, and organic semiconductors. In addition, the inclusion of new chapters and new sections to keep up with the latest developments in this rapidly-evolving field makes Nanotechnology for Microelectronics and Photonics, Second Edition an invaluable reference to research and industrial scientists looking for a guide on how nanostructured materials and nanoscale devices are used in microelectronics, optoelectronics, and photonics today and in future developments.

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Detaljer
Størrelse og vægt
  • Vægt860 g
  • coffee cup img
    10 cm
    book img
    19,1 cm
    23,5 cm

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    Bioelectronics Spintronics Therapy Heisenberg uncertainty principle Moore's law Nanophotonics Stark effect Hamiltonian operator Graphene CMOS Bloch's theorem Solar cell Distribution function Absorption coefficient Law of Mass Action Coulomb-Blockade Wave function Band structure MOSFET Fractional Quantum Hall Effect Flash Memory Memristor Fullerene Quantum dot Beyond CMOS devices Silicene Landau level acceptor Aharonov-Bohm effect Avalanche photodetector Bandtail states Ballistic regime Ballistic electron Beyond CMOS Bloch oscillators Artificial atom Bloch Oscillations Devices for CMOS extension Coulomb island Crystal momentum Diffusive regime Composite fermion Electroabsorption modulator Coupled quantum well (CQW)Heterojunction density of states Heterostructure semiconductor laser Index-guided laser Hot Electron DNA electronics Interband transition Edge States Landauer-Buttiker formula Luminescence yield Negative differential resistance Self-assembled Quantum Dot Standard of resistance Stanene Stark ladder Triangular potential well Wannier-Mott exciton Mean free path Stripe geometry configuration Vertical-cavity surface-emitting laser (VCSEL Multiple quantum well (MQW)nipi superlattice Velocity-overshoot effect Wigner Crystal Rydberg Constant Schrödinger equation Quantum well (QW)Superlattice (SL)Quantum-confined Stark ladders Population inversion Weak confinement regime Square potential well Strong confinement regime Selection rules Top-down nanofabrication Tunnel magnetoresistance (TMR) effect

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