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Terahertz technology : fundamentals and applications

Author: Ali Rostami; Hassan Rasooli; Hamed Baghban
Publisher: Heidelberg ; New York : Springer Verlag, ©2011.
Series: Lecture notes in electrical engineering, v. 77.
Edition/Format:   Print book : EnglishView all editions and formats
Summary:
"'Terahertz Technology' presents information about Terahertz science, Terahertz photodetectors and Terahertz Lasers. A special emphasis is given to room temperature operation of long wavelength photodetectors based on novel quantum dots (Centered Defect Spherical Quantum Dots). Moreover, a complete analysis of systems based on Quantum Cascade structures to detect far infrared wavelengths is provided. Finally, the  Read more...
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Material Type: Internet resource
Document Type: Book, Internet Resource
All Authors / Contributors: Ali Rostami; Hassan Rasooli; Hamed Baghban
ISBN: 9783642157929 3642157920
OCLC Number: 663950291
Description: xiii, 245 pages : illustrations (some color) ; 24 cm.
Contents: 1. An Overview of the Technological and Scientific Achievements of the Terahertz --
1.1. Introduction --
1.2. Terahertz Terminology --
1.3. Terahertz Applications and Opportunities --
1.3.1. Space --
1.3.2. Plasma Fusion Diagnostics --
1.3.3. Spectroscopy --
1.3.4. Industrial --
1.3.5. Communication --
1.3.6. Simulating the Radar Scattering Signatures --
1.3.7. T-Ray Imaging --
1.3.8. Medical --
1.3.9. Physics --
1.3.10. Chemistry and Biology --
1.4. Terahertz Components --
1.4.1. THz Detectors --
1.4.2. THz Sources --
1.5. Theoretically Investigation of Terahertz-Pulse Generation and Detection --
1.5.1. THz Pulse Generation and Detection Using Photoconductive Antenna (PC) --
1.5.2. THz Pulse Generation and Detection Using Other Methods --
1.5.3. THz Radiation from Bulk Semiconductor Microcavities --
1.6. THz Detectors and Sources with Organic Materials --
1.6.1. Conjugated Semiconducting Polymers --
1.6.2. Organic EO Polymers --
1.6.3. Organic EO Crystals --
1.6.4. Solutions Containing Polar Molecules --
2. Terahertz and Infrared Quantum Photodetectors --
2.1. Introduction --
2.2. Detector Principles --
2.2.1. Noise Affects --
2.2.2. Background Limited IR Performance --
2.2.3. Quantum Cascade Detectors --
2.2.4. Effects of Number of Periods and Doping Density on the Detector Parameters --
2.2.5. Quantum Dot Infrared Photodetectors --
2.3. Terahertz and Infrared Quantum Cascade Detectors --
2.3.1. Dual Color Mid-Infrared Quantum Cascade Photodetector in a Coupled Quantum Well Structure --
2.3.2. A Dual-Color IR Quantum Cascade Photodetector with Two Output Electrical Signal --
2.4. Terahertz Quantum Well Photodetector Based on Two-Photon Absorption --
2.5. Quantum Dots THZ-IR Photodetector --
2.5.1. An Overview of Quantum Dot --
2.5.2. An Overview of Quantum Dots Photodetectors --
2.5.3. Ultra-High Detectivity Room Temperature THZ-IR Photodetector Based on Resonant Tunneling Spherical Centered Defect Quantum Dot --
2.5.4. Terahertz Photodetector Based on Intersublevel Optical Absorption in Coupled Quantum Dots --
2.6. Terahertz and Infrared Photodetector Based on Electromagnetically Induced Transparency --
2.6.1. Electromagnetically Induced Transparency Phenomena --
2.6.2. EIT-Based Photodetection --
2.6.3. Terahertz Quantum Cascade Photodetector Based on Electromagnetically Induced Transparency --
3. Terahertz and Infrared Quantum Cascade Lasers --
3.1. Introduction --
3.2. Quantum Cascade Laser Principles --
3.2.1. Radiative and Non-radiative Transitions in Semiconductor Heterostructures --
3.2.2. Resonant Tunneling Transport --
3.2.3. Quantum Cascade Lasers --
3.2.4. Optical Gain --
3.2.5. Threshold Current --
3.2.6. Losses --
3.2.7. Slope Efficiency --
3.3. Terahertz Quantum Cascade Lasers --
3.3.1. Terahertz QCL Structures --
3.3.2. Drude Model --
3.3.3. Terahertz-Waveguide --
3.3.4. Distributed Feedback QCLs --
3.4. Analysis of Transport Properties of THz QCLs --
3.5. High Power QCLs --
3.5.1. Photonic Crystal DFB QCLs --
3.6. Dual-Wavelength Generation Based on Monolithic THz-IR QCL --
3.6.1. Linear Frequency-Doubling in IR QCL --
3.6.2. Dual Color Terahertz QCL.
Series Title: Lecture notes in electrical engineering, v. 77.
Responsibility: Ali Rostami, Hassan Rasooli, Hamed Baghban.
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Abstract:

Terahertz Technology provides an overview of Terahertz science, Terahertz photodetectors and Terahertz lasers. Readers will find a complete analysis of the use of systems-based Quantum Cascade  Read more...

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