OPTOELECTRONICS
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Optoelectronics is a practical and self-contained graduate-level text on the subject. The authors include such topics as quantum mechanics of electron-photon interaction, quantization of the electro-magnetic field, semiconductor properties, quantum theory of heterostructures and nonlinear optics. They build on these concepts to describe the physics, properties and performances of light-emitting diodes, quantum well lasers, photodetectors, optical parametric oscillators and waveguides. The emphasis is on the unifying theoretical analogies of optoelectronics, such as equivalence of quantization in heterostructure wells and waveguide modes, entanglement of blackbody radiation and semiconductor statistics.
原價:
1980
售價:
713
現省:
1267元
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LIQUID CRYSTALLINE POLYMERS 2004 (WS)
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This textbook consists of six chapters. The first chapter highlights the concept of liquid crystals, including chemical structure, phase classification, defect and texture, and continuum theory. It has been carefully written to meet the needs of readers who do not specialize in liquid crystals. The second chapter is related to the theoretical description of liquid crystalline polymers, networks, and gels, which deals with subjects such as the formation of liquid crystallinity in the polymer system, the phase transition and phase diagram, the molecular weight effect, chain conformation, physics properties, etc. In Chapter 3, the molecular engineering of liquid crystalline polymers is introduced. The molecular composition and the molecular weight play essential roles in the molecular design, which are reviewed in detail. In addition, some unusual liquid crystalline polymers are discussed. Chapter 4 is devoted to the phase identification of liquid crystalline polymers. The techniques involved cover polarizing microscopy, thermal analysis, X-ray diffraction, and other areas. Chapters 5 and 6 summarize the properties and applications of liquid crystalline polymers: Chapter 5 deals mainly with mechanical performance in fiber and composites; Chapter 6 presents the elasticity, viscosity and rheology of liquid crystalline polymers, as well as other important properties.
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1400
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611
現省:
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Liquid Crystals, Laptops and Life
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Liquid Crystals, Laptops and Life connects the laptop computer with life itself via liquid crystals, the phases of matter essential to both. In the process it provides an integrated introduction to those parts of chemistry and physics that are necessary for understanding the basic science and technology embedded in the laptop and in life. This book can be understood by students with a good background in high school chemistry and physics; yet it can also serve as a primer for scientists who are not well versed in the areas covered.The first section of the book is devoted to discussion of basic concepts of chemistry and physics. The second section applies these concepts and extends them to three classes of materials that make the laptop possible: liquid crystals, polymers, and semiconductors. The first two classes of materials relate naturally to the molecules essential to life, thus providing an introduction to this area in an independent chapter. The third section focuses on the applied science and technology of semiconductors, digital devices, and computers, as well as liquid crystal displays. This section concludes by illustrating how these materials and technologies are combined in and make possible the laptop computer. The final section discusses applications of liquid crystals to the arts and to life. Each chapter rounds off with references to more advanced literature, exercises that test the reader's understanding, and open-ended questions that encourage the reader to explore the topics in greater depth.
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Nanotechnology in Electronics, Photonics, Biosensors and Energy Systems
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書名:Nanotechnology in Electronics, Photonics, Biosensors and Energy Systems
作者:F Jain
出版商:World Scientific
出版日期:2023-09-01
ISBN:9789811283758
內容簡介
DESCRIPTION
This unique compendium consists of peer-reviewed articles spanning from novel growth of materials for nanoelectronic and nanophotonic devices, electronic nose sensor array, bio-nano-systems, artificial intelligence/machine learning, and emerging technologies, to applications in each of these fields.
Systems implementing additively manufactured RF devices for communication, packaging, remote sensing, compact multi-bit FETs and memories are also included.
Plasmonic nanostructures with electrical connections have potential applications as new electro-optic devices. Quantum dot-based devices are discussed with regard to optical logic gates, mid-infrared photodetectors, gain and index tailored external cavity high power lasers.
Contributed by eminent researchers, this useful reference text broadly illustrates relevant aspects of high-performance materials and emerging nanodevices for implementing high-speed electronic systems.
Sample Chapter(s)
Preface
Heating Effects on Nanofabricated Plasmonic Dimers with Interconnects
Contents:
Preface
Heating Effects on Nanofabricated Plasmonic Dimers with Interconnects (R Raman, J Grasso and B G Willis)
Utilizing Machine Learning for Rapid Discrimination and Quantification of Volatile Organic Compounds in an Electronic Nose Sensor Array (J Grasso, J Zhao and B G Willis)
Modeling of Enhancement Mode HEMT with π-Gate Optimization for High Power Applications (Md M Hossain, Md M H Shuvo, T Titirsha and S K Islam)
Encryption Using Optical Pseudo-Random Binary Sequence Based on Optical Logic Gate (S Fan, A Rahman and N K Dutta)
Behavioral Modeling of the Pinched Hysteresis Loop of a Pt/TiO2/Pt Memristor (A A Kausani and M Anwar)
Design and Simulation of Multi-State D-Latch Circuit Using QDC-SWS FETs (A Almalki, B Saman, R H Gudlavalleti, J Chandy, E Heller and F C Jain)
Hybrid Mode-Locked Fiber Ring Laser Using Graphene Saturable Absorbers to Generate 20 and 50-GHz Pulse Trains (A Rahman, S Fan and N K Dutta)
Low Noise Gain and Index Tailored External Cavity Laser Operating at 1310 nm for Performance Enhancements of IMDD Photonic Links (R Dougenik, R Lacomb and F Jain)
Compute-in-Memory SRAM Cell Using Multistate Spatial Wavefunction Switched (SWS)-Quantum Dot Channel (QDC) FET (R H Gudlavalleti, E Heller, J Chandy and F Jain)
High Speed 1550 nm Indium Gallium Arsenide-Indium Phosphide Photodetector (E Perez, R LaComb and F Jain)
1D and 2D Chaotic Time Series Prediction Using Hierarchical Reservoir Computing System (Md R Hossain, A Dhungel, M Sadia, P S Paul and Md S Hasan)
PCB Security Modules for Reverse-Engineering Resistant Design (S Chen and L Wang)
Next Generation RF Modules for 5G, IoT, AR/VR and RFID Applications (M Joshi, K Hu, G Soto-Valle, H Al Jamal and M Tentzeris)
Fabrication of Multi-Bit SRAMs Using Quantum Dot Channel (QDC)-Quantum Dot Gate (QDG) FET (R H Gudlavalleti, J Goosen, T Liu, H Bradley, E Parent, A Almalki, E Perez and F Jain)
Enhancing Number of Bits Via Mini-Energy Band Transitions Using Si Quantum Dot Channel (QDC) and Ge Quantum Dot Gate (QDG) FETs and NVRAMs (F Jain, R H Gudlavalleti, A Almalki, B Saman, P-Y Chan, J Chandy, F Papadimitrakopoulos and E Heller)
Filtration Methods for Microplastic Removal in Wastewater Streams — A Review (U Salahuddin, J Sun, C Zhu and P Gao)
Numerical Investigation of the Electrothermal Properties of SOI FinFET Transistor (F Nasri and H Salama)
Memristor-Based Material Implication Logic: Prelude to In-Memory Computing (A Mazady and M Anwar)
Magnetostrictive Fiber Sensors as Total Field Magnetometers (R Dougenik, R Lacomb and F Jain)
Propagation Delay and Power Dissipation Analysis for a 2-Bit SRAM Using Multi-State SWS Inverter (A Husawi, R H Gudlavalleti, B Saman, A Almalki, J Chandy, E Heller and F C Jain)
Ultra-Short Pulse-Train Generation of 30-GHz Repetition Rate Using Rational Harmonic Mode Locking and Nonlinear Polarization Rotation (A Rahman, S Fan and N K Dutta)
Threshold Inverter Quantizer (TIQ)-Based 2-Bit Comparator Using Spatial Wavefunction Switched (SWS) FET Inverters (W Alamoudi, B Saman, R H Gudlavalleti, A Almalki, J Chandy, E Heller and F Jain)
Novel Multi-State QDC-QDG FETs and Gate All Around (GAA) FETs for Integrated Logic and QD-NVRAMs (F Jain, R H Gudlavalleti, J Chandy and E Heller)
Author Index
Readership: Researchers, professionals, academics, and graduate students in electrical & electronics engineering, circuits & systems, microelectronics and nanoelectronics.
原價:
3195
售價:
3035
現省:
160元
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