LEADER 05153nam 2200625Ia 450 001 9910140815503321 005 20170809161210.0 010 $a1-283-91618-5 010 $a0-470-64934-8 010 $a0-470-64933-X 035 $a(CKB)2670000000034435 035 $a(EBL)573777 035 $a(SSID)ssj0000418355 035 $a(PQKBManifestationID)11286245 035 $a(PQKBTitleCode)TC0000418355 035 $a(PQKBWorkID)10376734 035 $a(PQKB)10939616 035 $a(MiAaPQ)EBC573777 035 $a(CaSebORM)9780470551370 035 $a(OCoLC)664565829 035 $a(EXLCZ)992670000000034435 100 $a20100303d2010 uy 0 101 0 $aeng 135 $aur|n|---||||| 181 $ctxt 182 $cc 183 $acr 200 10$aFuture trends in microelectronics$b[electronic resource] $efrom nanophonics to sensors and energy /$fSerge Luryi, Jimmy Xu, Alexander Zaslavsky 205 $a1st edition 210 $aOxford $cWiley-Blackwell$dc2010 215 $a1 online resource (448 p.) 300 $aDescription based upon print version of record. 311 $a0-470-55137-2 320 $aIncludes bibliographical references and index. 327 $aFuture Trends in Microelectronics: From Nanophotonics to Sensors and Energy; CONTENTS; Preface; 1 OPTOELECTRONICS AND NANOPHOTONICS; Nanophotonics for Information Systems; What Will Modern Photonics Contribute to the Development of Future Optical Communication Technology?; Ultrafast Nanophotonic Devices For Optical Interconnects; Intersubband Quantum-Box Lasers: Progress and Potential as Uncooled Mid-Infrared Sources; GaSb-based Type-I Laser Diodes Operating at 3 ?m and Beyond; Bridging Optics and Electronics with Quantum Cascade Lasers, Antennas, and Circuits 327 $aTowards Intersubband Polaritonics: How Fast Can Light and Electrons Mate?Si3N4/SiO2 Planar Photonic Structures Fabricated by Focused Ion Beam; 2 ELECTRONIC DEVICES AND SYSTEMS; Silicon-Based Devices and Materials for Nanoscale CMOS and Beyond-CMOS; Device Proposals Beyond Silicon CMOS; GeOI as a Platform for Ultimate Devices; Simulation of Self-Heating Effects in Different SOI MOS Architectures; Nanowires: Technology, Physics and Perspectives; Emerging Nanotechnology for Integration of Nanostructures in Nanoelectronic Devices 327 $aScrolled Si/SiGe Heterostructures as Building Blocks for Tube-Like Field-Effect TransistorsSilicon Nanowire-Based Nonvolatile Memory Cells: Progress and Prospects; Prospects and Challenges of Next-Generation Flash Memory Devices; Chalcogenide Glassy Semiconductors - Could They Replace Silicon in Memory Devices?; Current Status and Recent Developments in RSFQ Processor Design; 1/f Noise: The Funeral is Cancelled (or Postponed); 3 PHYSICS, BIOLOGY, AND OTHER SISTER SCIENCES; Spin Hall Effect; Can Biology Provide Creative Solutions for Next-Generation Memory Devices? 327 $aSpin Screening of Magnetization Due to Inverse Proximity Effect in Superconducting/Ferromagnetic BilayersSilicon for Spintronic Applications: Strain-Enhanced Valley Splitting; Graphene-Based Terahertz Devices: Concepts and Characteristics; Directed Self-Assembly - A Controllable Route to Optical and Electronic Devices Based on Single Nanostructures; 4 SENSORS, DETECTORS, AND ENERGY; Three-Dimensional Position-Sensitive Wide Bandgap Semiconductor Gamma-Ray Imaging Detectors; Semiconductor Scintillator for Three-Dimensional Array of Radiation Detectors 327 $aSemiconductor Gamma Radiation Detectors: Band Structure Effects in Energy ResolutionThe Future of Microelectronics is ... Macroelectronics; An Integration Challenge: Information and Communication Technologies to Address Indoor Air Quality in Commercial Buildings; Quantum-Dot Infrared Photodetectors: In Search of the Right Design for Room-Temperature Operation; Treating the Case of Incurable Hysteresis in VO2; Exploratory Studies on Silicon-Based Oxide Fuel Cell Power Sources Incorporating Ultrathin Nanostructured Platinum and Cerium Oxide Films as Anode Components; INDEX 330 $aIn the summer of 2009, leading professionals from industry, government, and academia gathered for a free-spirited debate on the future trends of microelectronics. This volume represents the summary of their valuable contributions. Providing a cohesive exploration and holistic vision of semiconductor microelectronics, this text answers such questions as: What is the future beyond shrinking silicon devices and the field-effect transistor principle? Are there green pastures beyond the traditional semiconductor technologies? This resource also identifies the direction the field is taking, enabling 606 $aMicroelectronics 606 $aElectronics 615 0$aMicroelectronics. 615 0$aElectronics. 676 $a621.381 700 $aLuryi$b Serge$0882467 701 $aXu$b Jimmy$0882468 701 $aZaslavsky$b Alexander$0630490 801 0$bMiAaPQ 801 1$bMiAaPQ 801 2$bMiAaPQ 906 $aBOOK 912 $a9910140815503321 996 $aFuture Trends in Microelectronics$91971026 997 $aUNINA