<p>This book highlights recent advances and applications in terahertz (THz) technology, addressing advanced topics such as THz biomedical imaging, pattern recognition and tomographic reconstruction for THz biomedical imaging by machine learning and artificial intelligence, THz imaging radars for aut
Emerging Trends in Terahertz Solid-State Physics and Devices
â Scribed by Arindam Biswas, Amit Banerjee, Aritra Acharyya, Hiroshi Inokawa, Jintendra Nath Roy
- Publisher
- Springer
- Year
- 2020
- Tongue
- English
- Leaves
- 210
- Category
- Library
No coin nor oath required. For personal study only.
⌠Synopsis
This book highlights recent advances and applications in terahertz (THz) technology, addressing advanced topics such as THz biomedical imaging, pattern recognition and tomographic reconstruction for THz biomedical imaging by machine learning and artificial intelligence, THz imaging radars for autonomous vehicle applications, and THz imaging systems for security and surveillance. It also discusses theoretical, experimental, established and validated empirical work on these topics.
⌠Table of Contents
Preface
Contents
About the Editors
THz Bandpass Filter Design Using Metamaterial-Based Defected 1D Photonic Crystal Structure
1 Introduction
2 Objective
3 Mathematical Formulation
3.1 Transmission and Reflection Coefficients for Polarized Wave Incidence
3.2 Eigenmodes for Planar Photonic Structure
3.3 Transmission Coefficient
4 Results and Discussions
5 Conclusion
References
Terahertz Radiators Based on Silicon Carbide Avalanche Transit Time SourcesâPart I: Large-Signal Characteristics
1 Introduction
2 Substance Parameters and Design Strategy
3 NSVE Large-Signal Model
4 Observations and Discussion
5 Conclusion
References
Terahertz Radiators Based on Silicon Carbide Avalanche Transit Time SourcesâPart II: Avalanche Noise Characteristics
1 Introduction
2 AÂ Brief History
3 Substance Parameters and Design Strategy
4 Small-Signal Noise Model
4.1 Effect of Optical Illumination
4.2 Influence of Magnetic Field
4.3 Effect of Reduced Impact Ionization Rate
5 Noise Characterizes of 3C-SiC IMPATT Sources
6 Conclusion
References
RF Performance of Ultra-wide Bandgap HEMTs
1 Introduction
2 GaN-Based HEMTs
2.1 GaN Power Amplifier
3 RF Performance of β-Ga2O3 Devices
4 Limits to RF and DC Performance (GaN and Ga2O3 HEMTs)
5 Conclusion
References
Potentiality of Impact Avalanche Transit Time Diode as Terahertz Source Based on Group IV and IIIâV Semiconducting Materials
1 Introduction
2 Numerical Method and Design Parameters
3 Results and Discussion
3.1 Avalanche Response Time Determination
3.2 Drift Response Time Calculation
3.3 Drift Capacitance and Resonant Frequency
4 Conclusion
References
Analysis of InN-Based Surrounded Gate Tunnel Field-Effect Transistor for Terahertz Applications
1 Introduction
2 Device Structure and Simulatiοn
2.1 Different Device Models
2.2 Device and Electrical Parameter Analysis
2.3 Proposed Methodology and Simulation Framework
3 Results and Discussion
3.1 DC Characteristics
3.2 Small-Signal Analysis
4 Conclusion
References
On the Quantum Capacitance of Quantum Wire Field-Effect Transistors of Compound Semiconductors
1 Introduction
2 Theoretical Background
2.1 The Cg in QWFET of Tetragonal Materials
2.2 The Cg in QWFET of Kane-Type Compounds
2.3 The Cg in QWFET of IIâVI Materials
2.4 The barCG in QWFET of IVâVI Materials
2.5 The Cg in QWFET of Stressed Materials
2.6 The Cg in QWFET of GaP Material
2.7 The Cg in QWFET of PtSb2 Material
2.8 The Cg in QWFET of Bi2 Te3 Material
2.9 The Cg in QWFET of Ge
2.10 The Cg in QWFET of GaSb
2.11 The Cg in QWFET of IIâV Materials
3 Results and Discussion
References
Heterostructure Devices for THz Signal Recognition
1 Introduction
2 Imaging with Sensing Technique of Terahertz Utilizing IIIâV HEMTs
2.1 Device Manufacturing
2.2 Demonstrations for Imaging and Sensing of Terahertz
3 Terahertz Appliances
4 Production and Recognition of Terahertz Radiation
5 GaN-Supported QCL
6 GaN-Supported HEMTs Like THz Detection Systems Depend Over Self-mixing
7 Conclusion
References
Data Transmission with Terahertz Communication Systems
1 Introduction
2 Choice of the Carrier Frequency
3 Channel Modeling
4 Modulation Schemes
4.1 OOK Modulation
4.2 QPSK Modulation
5 Spectral Efficiency of Single Carrier System
6 GMSK and MSK Modulation
7 THz 16 QAM/QPSK Transmission
7.1 Power Spectral Density
7.2 Alamouti Scheme for MIMO System
7.3 Maximum Ratio Combining
7.4 Alamouti Code in MIMO System with RMC Receiver
7.5 Discussion of the Results and Their Context
8 Conclusion
References
Advances in Terahertz Imaging
1 Introduction
2 Terahertz Imaging Components
3 Imaging Methods for Terahertz Waves
3.1 THz Time-Domain Spectroscopy System Imaging
3.2 Terahertz Reflection, Transmission and Conductivity Imaging
3.3 THz Pulsed Imaging
3.4 THz Computed Tomography
3.5 THz Near-Field Imaging
4 Terahertz Imaging Cameras
4.1 Terahertz FET-Based Cameras
4.2 Terahertz Thermal Cameras
5 Applications
5.1 Biomedical Applications
5.2 Security Applications
5.3 Food Industry
5.4 Art Conservation
5.5 Pharmaceutical Industry
5.6 Polymer and Paper Industries
6 Conclusion
References
Terahertz Emission Mechanisms in IIIâV Semiconductors: The Influence of Isoelectronic Dopants
1 Introduction
2 THz Emission from Semiconductors
3 Isoelectronic Doping
4 IIIâV Bismide Alloys
5 Structural Properties
6 Optoelectronic Properties
7 Transport Properties
8 Terahertz Emission from IIIâV-Bismide Alloys
9 GaAsBi
9.1 Optical Rectification
9.2 Transient Photocurrents
9.3 Photoconductive Antennas
9.4 GaSbBi
9.5 Application in THz Spectroscopy
References
Group IIIâNitrides and Other Semiconductors for Terahertz Detector
1 Introduction
2 Important Figures of Merit
3 Various Types of Terahertz Detectors
4 Conclusion
References
đ SIMILAR VOLUMES
<p><span>This book highlights emerging trends in terahertz engineering and system technologies, mainly, devices, advanced materials, and various applications in THz technology. It includes advanced topics such as terahertz biomedical imaging, pattern recognition and tomographic reconstruction for TH
<p>The past three decades have been a period where useful current and voltage instabilities in solids have progressed from exciting research problems to a wide variety of commercially available devices. Materials and electronics research has led to devices such as the tunnel (Esaki) diode, transferr
<p><i>Physics of Nanostructured Solid State Devices</i> introduces readers to theories and concepts such as semi-classical and quantum mechanical descriptions of electron transport, methods for calculations of band structures in solids with applications in calculation of optical constants, and other
In recent years, crystallographic techniques have found application in a wide range of subjects, and these applications in turn have lead to exciting developments in the field of crystallography itself. This new textbook offers an introduction to these developments, and for the first time provides,
<p><i>Physics of Nanostructured Solid State Devices</i> introduces readers to theories and concepts such as semi-classical and quantum mechanical descriptions of electron transport, methods for calculations of band structures in solids with applications in calculation of optical constants, and other