Search Results - "semiconductors"

  1. 201

    Strong light-matter coupling : from atoms to solid-state systems /

    Published 2014
    Table of Contents: “…Cavity QED in atomic physics / Serge Haroche and Jean-Michel Raimond -- Exciton-polaritons in bulk semiconductors and in confined electron and photon systems / Lucio Claudio Andreani -- Experimental circuit QED / Patrice Bertet -- Quantum open systems / H.J. …”
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  2. 202

    Treatment of Industrial Effluents : Case Studies. by Purkait, Mihir K., Mondal, Piyal, Chang, Chang-Tang

    Published 2019
    Table of Contents: “…Introduction to Different Industrial Effluents and Existing Treatment Technologies Treatment Techniques of Textile Plant Effluents Treatment of Leather Plant Effluents Treatment of Palm Oil Mill Effluents Treatment of Effluents from Sugar Processing Industry Treatment of Pharmaceutical Industry Effluents Treatment of Paper and Pulp Industry Effluents Effluent Treatment of Semiconductor Industry Treatment of Livestock Waste and Effluents Iron and Steel Industry Effluent Treatment Techniques Treatment of Coal Industry Effluents Treatment of Petrochemical Industry Effluents Treatment of Nuclear Industry Effluents Food Industry Effluent Treatment Techniques Technologies and Advancements for Gas Effluent Treatment of Various Industries…”
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  3. 203

    Guide to state-of-the-art electron devices

    Published 2013
    Table of Contents: “…Machine generated contents note: Foreword Preface Contributors and Acknowledgements Historic Timeline Part I - Basic Electron Devices 1 Bipolar Transistors 1.1 Motivation 1.2 The pn Junction and Its Electronic Applications 1.3 The Bipolar Junction Transistor and Its Electronic Applications 1.4 Optimization of Bipolar Transistors 1.5 SiGe Heterojunction Bipolar Transistors References 2 MOS Devices 2.1 Introduction 2.2 MOSFET Basics 2.3 The Evolution of MOSFET 2.4 Concluding Remarks References 3 Memory Devices 3.1 Introduction 3.2 Volatile Memories 3.3 Non-Volatile Memories 3.4 Future Perspectives of MOS Memories 3.5 Closing Remarks References 4 Passive Components 4.1 Discrete and integrated passive components 4.2 Application in Analog ICs and DRAM 4.3 The planar Spiral Inductor - A Case Study 4.4 Parasitics in Integrated Circuits References 5 Emerging Research Devices 5.1 Non-Charge Based Switching 5.2 Carbon as a Replacement for Silicon and the Rise of Moletronics 5.3 Conclusions References Part II - Aspects of Device and IC Manufacturing 6 Electronics Materials 6.1 Introduction 6.2 Silicon Device Technology 6.3 Compound Semiconductor Devices 6.4 Electronic Displays 6.5 Conclusions References 7 Compact Modeling 7.1 The Role of Compact Models 7.2 Bipolar Transistor Compact Modeling 7.3 MOS Transistor Compact Modeling 7.4 Compact Modeling of Passive Components 7.5 Benchmarking and Implementation References 8 Technology Computer Aided Design 8.1 Introduction 8.2 Drift-Diffusion Model 8.3 Microscopic Transport Models 8.4 Quantum Transport Models 8.5 Process and Equipment Simulation References 9 Device Reliability Physics 9.1 Introduction and Background 9.2 Device Reliability Issues 9.3 Interconnect Degradation Mechanisms 9.4 Circuit-Level Reliability Issues 9.5 Microscopic Approaches to Assuring Reliability of ICs References 10 Semiconductor Manufacturing 10.1 Introduction 10.2 Substrates 10.3 Lithography and Etching 10.4 Front-End Processing 10.5 Back-End Processing 10.6 Process Control 10.7 Assembly and Test 10.8 Future Directions References Part III - Applications based on Electron Devices 11 VLSI Logic Technology and Circuits 11.1 Introduction 11.2 MOSFET Scaling Trends 11.3 Low-Power and High-Speed Logic Design 11.4 Scaling-Driven technology Enhancements 11.5 Ultra-Low Voltage Transistors 11.6 Interconnects 11.7 Memory Design 11.8 System Integration References 12 VLSI Mixed-Signal Technology And Circuits 12.1 Introduction 12.2 Analog/Mixed-Signal Technologies in Scaled CMOS 12.3 Data Converter ICs 12.4 Mixed-Signal Circuits in Low-Power Display Applications 12.5 Image Sensor Technology and Circuits References 13 Memory Technologies 13.1 Semiconductor Memory History 13.2 State of Mainstream Semiconductor Memory Today 13.3 Emerging Memory Technologies 13.4 Conclusions References 14 RF&Microwave Semiconductor Technologies 14.1 III-V Based: GaAs and InP 14.2 Si and SiGe 14.3 Wide Bandgap Devices (Group III-Nitrides, SiC and Diamond) References 15 Power Devices and ICs 15.1 Overview of Power Devices & ICs 15.2 Two-Carrier and High-Power Devices 15.3 Power MOSFET Devices 15.4 High-Voltage and Power ICs 15.5 Wide Bandgap Power Devices References 16 Photovoltaic Device Applications 16.1 Introduction 16.2 Silicon Photovoltaics 16.3 Polycrystalline Thin-Film Photovoltaics 16.4 III-V Compound Photovoltaics 16.5 Future Concepts in Photovoltaics References 17 Large Area Electronics 17.1 Thin-Film Solar Cells 17.2 Large-Area Imaging 17.3 Flat-Panel Displays References 18 Microelectromechanical Systems (MEMS) 18.1 Introduction 18.2 The 1960's - First Micromachined Structures Envisioned 18.3 The 1970's - Integrated Sensors Started 18.4 The 1980's - Surface Micromachining Emerged 18.5 The 1990's - MEMS Impacted Various Fields 18.6 The 2000's - Diversified Sophisticated Systems Enabled By MEMS 18.7 Future Outlook References 19 Vacuum Device Applications 19.1 Traveling-Wave Devices 19.2 Klystrons 19.3 Inductive Output Tubes 19.4 Crossed-Field Devices 19.5 Gyro-Devices References 20 Optoelectronic Device Applications 20.1 Introduction 20.2 Light Emission in Semiconductors 20.3 Photodetectors 20.4 Integrated Optoelectronics 20.5 Optical Interconnects 20.6 Concluding Remarks References 21 Devices for the Post Silicon CMOS Era 21.1 Introduction 21.2 Devices for the 8-nm Node With Conventional Materials 21.3 New Channel Materials and Devices 21.4 Concluding Remarks References Index.…”
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  4. 204

    Nanowires properties, synthesis and applications /

    Published 2012
    Table of Contents: “…Barnaby, Nako Nakatsuka and Ipsita A. Banerjee -- Semiconductor nanowires and heterostructure based gas sensors / N.S. …”
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  5. 205

    Materials for energy

    Published 2021
    Table of Contents: “…3.2.2.1 The Working Principle of Dielectric-to-Conductor Device -- 3.2.2.2 The Advantages of Dielectric-to-Conductor Device -- 3.2.2.3 Development of Dielectric-to-Conductor Paired Materials for TENGs -- 3.2.3 Semiconductor Device Structure -- 3.2.3.1 The Role of Semiconductor for TENGs -- 3.2.3.2 Semiconductor-to-Dielectric Device -- 3.2.3.3 Semiconductor-to-Conductor Device -- 3.3 The Output Enhancement Mechanism in TENGs -- 3.3.1 Selection of Paired Materials -- 3.3.2 Enhancement in Effective Contact -- 3.3.3 Modification of Material Composition -- 3.3.4 Control of Environmental Conditions…”
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  6. 206
  7. 207
  8. 208

    Introduction to laser science and engineering / by Taylor, Travis S.

    Published 2020
    Table of Contents: “…-- Solid-state lasers -- Dye lasers -- Semiconductor lasers -- Gas lasers -- Chemical lasers -- Metal vapor lasers -- Ion lasers -- More exotic lasers -- How do we describe lasers? …”
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  9. 209
  10. 210

    Multiscale Simulations for Electrochemical Devices by Asahi, Ryoji

    Published 2019
    Table of Contents: “…4.3 Electron Transfer Dynamics in Semiconductor/Metal-Complex for CO2 Reduction -- 4.3.1 Methodology -- 4.3.2 Results and Discussion -- 4.4 Summary and Future Scope -- 5: Large-Scale Simulations I: Methods and Applications for a Li-Ion Battery -- 5.1 Introduction -- 5.2 Method -- 5.2.1 Real-Space Grid Kohn-Sham DFT (RGDFT) Method [48] -- 5.2.2 Divide-and-Conquer-Type RGDFT Method [48] -- 5.2.3 Hybrid Quantum-Classical Simulation Method -- 5.2.3.1 Buffered cluster method -- 5.3 Applications…”
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  11. 211

    21st century nanoscience : a handbook.

    Published 2021
    Table of Contents: “…<P>Nanophotonic Devices Based on Low-Voltage Emission of 2D Electron Gas -- Kim</P><P>Polarized Nano-Optics -- Brasselet</P><P>Optical Properties of Semiconductor Nanostructures -- Cantarero</P><P>Hybrid Phase-Change Nanophotonic Circuits -- Pernice</P><P>X-Ray Nanophotonics Based on Planar X-Ray Waveguide Resonator -- Egorov</P><P>Optical Tweezers -- Li</P><P>Metal Nanostructures with Plasmonically Enhanced Raman and Photoluminescence Signals -- Nam</P><P>GaN Nanoflowers: Growth to Optoelectronic Device -- Gupta</P><P>The Future of Nanoelectronics -- Deleonibus</P><P>Semimetal Nanoelectronics: Quantum Confinement and Surface Chemistry as Design Tools -- Greer</P><P>Neuromorphic Nanoelectronics -- Fairfield</P><P>Single-Electronics: Modeling and Simulation Techniques - Santos Pes</P><P>Single Electron Transport and Possible Quantum Computing in 2D Materials -- Chiu</P><P>Assembly of Plasmonic Nanoparticles - Zheng</P><P>Coulomb Blockade Plasmonic Switch -- Gordon</P><P>Amplification of Surface Plasmons -- Wartak</P><P>Magneto-Plasmonics in Purely Ferromagnetic Subwavelength Arrays -- Papaioannou</P><P>Cathodoluminescence of Nanoplasmonics -- Yamamoto</P><P>Biosensing under Surface Plasmon Resonance Conditions -- Snopok</P><P>Plasmonic Optical Antenna and its Enhancement to Infrared Photodetectors -- Lu</P>…”
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  12. 212
  13. 213

    Polymers for electricity and electronics materials, properties, and applications / by Drobny, Jiri George

    Published 2012
    Table of Contents: “…Introduction.1.1 Electric Charge.1.2 Coulomb's Law.1.3 Conductors and Insulators.1.4 Capacitors.1.5 Dielectrics and Capacitance.1.6 Dielectric Polarizability.1.7 Voltage.1.8 Electric Currents.1.9 Resistance and Resistivity.1.11 Semiconductors.1.12 Superconductivity and Superconductors.1.13 Piezoelectricity.1.14 Pyroelectricity.1.15 Ferroelectricity.2. …”
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  14. 214

    Materiology : the creatives guide to materials and technologies / by Kula, Daniel, Ternaux, Elodie

    Published 2014
    Table of Contents: “…Acrylonitrile butadiene styrene -- Aerogels -- Alucobond® -- Aluminum -- Asphalt -- Basalt, melted and lava -- Bakelite -- Bamboo -- Biopolymers -- Brass -- Bronze -- Burrs -- Carbon -- Cardboard -- Cast iron -- Cellulose acetate -- Ceramic, architectural -- Ceramic, technical -- Ceramic, traditional -- Chipboard -- Concretes, conventional -- Concretes, fibre -- Concrete, high performance -- Copper -- Cork -- Crystal -- Diamond -- Electroluminescence -- Emerald -- Epoxy or epoxides polyepoxides -- Felt -- Fibres, artificial -- Fibres, carbon, aramid, basalt -- Fibres, glass -- Fibres of animal origin -- Fibres of vegetable origin -- Fibres, synthetic -- Foams -- Full grain leather -- Fur -- Gallium -- Glass, 3D -- Glass, borosilicate -- Glass, coated -- Glass, security-safety -- Glass, toughened -- Glass, vitroceramic -- Gold -- Granite -- Honeycombs -- Horn -- Ivory -- Lacquer -- Laminated timber, glued -- Laminates -- Laser -- Latheboard or coreboard -- Lead -- LED -- LED, O-, P-, PHO- -- Light source, discharge fluorescent -- Light source, halogen incandescent -- Light source, sodium mercury discharge -- Light source, standard incandescent -- Limestone -- Liquidmetal® -- Lithium -- Magnesium -- Magnetic materials -- Marble -- MDF -- Mercury -- Metamaterials -- Mirrors -- Mortar -- Nacre -- Non-Newtonian fluids -- Nubuck-buckskin-suede -- Oriented strand-board -- Paper -- Parchment -- Phosphorescence-fluorescence -- Photovoltaic cell -- Piezoelectric materials -- Plaster -- Plywood -- Plywood, moulded -- Polyamide -- Polycarbonate -- Polyester -- Polymethyl methacrylate -- Polyoxymethylene -- Polypropylene -- Polystyrene -- Polytetrafluorethylene -- Polyurethane -- Polyvinal chloride -- Precious stones -- Rare earths -- Rubber-latex -- Ruby & sapphire -- Sandstone -- Schist -- Semiconductors -- Shape memory alloys -- Sharkskin or shagreen -- Shell -- Silicon -- Silicone -- Silver -- Solid surfaces -- Superconductors -- Stainless steel -- Steels -- Thermoplastic elastomers -- Tin -- Titanium -- Veneer -- Wood polymers -- Wood, retified -- Wood species -- XX-chromatic -- Zamak alloys -- Zinc -- Processes. …”
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  15. 215

    Handbook for III-V high electron mobility transistor technologies /

    Published 2019
    Table of Contents: “…Nirmal] 15. Metal Oxide Semiconductor High Electron Mobility Transistors [D. …”
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  16. 216

    Chemical technology and informatics in chemistry with applications /

    Published 2019
    Table of Contents: “…Vakhrushev -- Use of genetic algorithms to solve optimization problems: a critical overview and a vision for the future / Sukanchan Palit -- Beer, all a science, alcohol: analysis and quality testing at multiple brewery stages / Francisco Torrens and Gloria Castellano -- Ozonation of industrial wastewater and the future of industrial pollution control: a critical review and a vision for the future / Sukanchan Palit -- Novel applications of multiferroic heterostructures / Ann Rose Abraham, Sabu Thomas, and Nandakumar Kalarikkal -- THz generation from gallium arsenide semiconductor surfaces and its application in spectroscopy / M. …”
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  17. 217

    Hard-to-measure goods and services essays in honor of Zvi Griliches /

    Published 2007
    Table of Contents: “…Jorgenson -- The role of semiconductor inputs in it hardware price decline : computers vs. communications / Ana Aizcorbe, Kenneth Flamm, and Anjum Khurshid -- Computer input, computer networks, and productivity / B. …”
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  18. 218

    Thermodynamics and the destruction of natural resources

    Published 2011
    Table of Contents: “…Case studies in energy use to realize ultra-high purities in semiconductor manufacturing Eric Williams, Nikhil Krishnan, Sarah Boyd; 8. …”
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  19. 219

    1-Dimensional Metal Oxide Nanostructures : Growth, Properties, and Devices /

    Published 2018
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  20. 220

    Advances in Optoelectronic Technology and Industry Development Proceedings of the 12th International Symposium on Photonics and Optoelectronics (SOPO 2019), August 17-19, 2019, Xi'...

    Published 2019
    Table of Contents: “…2 optical switch based on semiconductor optical amplifier cross-gain modulation technology…”
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