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Semiconductor terahertz technology : devices and systems at room temperature operation / / editors, Guillermo Carpintero, Luis Enrique Garcâia-Muänoz, Hans H. Hartnagel, Sascha Preu
Semiconductor terahertz technology : devices and systems at room temperature operation / / editors, Guillermo Carpintero, Luis Enrique Garcâia-Muänoz, Hans H. Hartnagel, Sascha Preu
Pubbl/distr/stampa Hoboken [New Jersey] : , : John Wiley & Sons, Inc., , 2015
Descrizione fisica 1 online resource (427 p.)
Disciplina 621.381/33
Collana Wiley - IEEE
Soggetto topico Terahertz technology
Semiconductors
Submillimeter waves
Very high speed integrated circuits
ISBN 1-118-92039-2
1-118-92041-4
1-118-92040-6
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Acknowledgments xi -- Preface xiii -- Foreword xvii -- List of Contributors xix -- 1 General Introduction 1 /Hans Hartnagel, Antti V. Raisanen, and Magdalena Salazar-Palma -- 2 Principles of THz Generation 3 /Sascha Preu, Gottfried H. DŠohler, Stefan Malzer, Andreas StŠohr, Vitaly Rymanov, Thorsten GŠobel, Elliott R. Brown, Michael Feiginov, Ramón Gonzalo, Miguel Beruete, and Miguel Navarro-Cya -- 2.1 Overview 3 -- 2.2 THz Generation by Photomixers and Photoconductors 5 -- 2.2.1 Principle of Operation 5 -- 2.2.2 Basic Concepts and Design Rules 7 -- 2.2.3 Thermal Constraints 21 -- 2.2.4 Electrical Constraints 23 -- 2.2.5 Device Layouts of Photoconductive Devices 35 -- 2.2.6 Device Layouts of p-i-n Diode-Based Emitters 47 -- 2.3 Principles of Electronic THz Generation 53 -- 2.3.1 Oscillators with Negative Differential Conductance 54 -- 2.3.2 Multipliers (Schottky Diodes, Hetero-Barrier Varactors) 56 -- 2.3.3 Plasmonic Sources 58 -- References 61 -- 3 Principles of Emission of THzWaves 69 /Luis Enrique Garcya Munoz, Sascha Preu, Stefan Malzer, Gottfried H. DŠohler, Javier Montero-de-Paz, Ramón Gonzalo, David González-Ovejero, Daniel Segovia-Vargas, Dmitri Lioubtchenko, and Antti V. Raisanen -- 3.1 Fundamental Parameters of Antennas 69 -- 3.1.1 Radiation Pattern 69 -- 3.1.2 Directivity 71 -- 3.1.3 Gain and Radiation Efficiency 71 -- 3.1.4 Effective Aperture Area and Aperture Efficiency 72 -- 3.1.5 Phase Pattern and Phase Center 72 -- 3.1.6 Polarization 72 -- 3.1.7 Input Impedance and Radiation Resistance 72 -- 3.1.8 Bandwidth 73 -- 3.2 Outcoupling Issues of THz Waves 73 -- 3.2.1 Radiation Pattern of a Dipole over a Semi-Infinite Substrate 75 -- 3.2.2 Radiation Pattern of a Dipole in a Multilayered Medium 79 -- 3.2.3 Anomalies in the Radiation Pattern 82 -- 3.3 THz Antenna Topologies 84 -- 3.3.1 Resonant Antennas 85 -- 3.3.2 Self-Complementary Antennas 87 -- 3.4 Lenses 90 -- 3.4.1 Lens Design 90 -- 3.5 Techniques for Improving the Performance of THz Antennas 93 -- 3.5.1 Conjugate Matching Technique 93.
3.5.2 Tapered Slot Antenna on Electromagnetic Band Gap Structures 99 -- 3.6 Arrays 107 -- 3.6.1 General Overview and Spectral Features of Arrays 107 -- 3.6.2 Large Area Emitters 113 -- References 157 -- 4 Propagation at THz Frequencies 160 /Antti V. Raisanen, Dmitri Lioubtchenko, Andrey Generalov, J. Anthony Murphy, Créidhe O'Sullivan, Marcin L. Gradziel, Neil Trappe, Luis Enrique Garcia Munoz, Alejandro Garcia-Lamperez, and Javier Montero-de-Paz -- 4.1 Helmholtz Equation and Electromagnetic Modes of Propagation 160 -- 4.2 THz Waveguides 167 -- 4.2.1 Waveguides with a Single Conductor: TE and TM Modes 168 -- 4.2.2 Waveguides with Two or More Conductors: TEM and Quasi-TEM Modes 173 -- 4.2.3 Waveguides with No Conductor: Hybrid Modes 177 -- 4.3 Beam Waveguides 183 -- 4.3.1 Gaussian Beam 183 -- 4.3.2 Launching and Focusing Components: Horns, Lenses, and Mirrors 187 -- 4.3.3 Other Components Needed in Beam Waveguides 193 -- 4.3.4 Absorbers 195 -- 4.3.5 Modeling Horns Using Mode Matching 195 -- 4.3.6 Multimode Systems and Partially Coherent Propagation 199 -- 4.3.7 Modeling Techniques for THz Propagation in THz Systems 201 -- 4.4 High Frequency Electric Characterization of Materials 202 -- 4.4.1 Drude Model 203 -- 4.4.2 Lorentz-Drude Model 204 -- 4.4.3 Brendel-Bormann Model 205 -- 4.5 Propagation in Free Space 205 -- 4.5.1 Link Budget 205 -- 4.5.2 Atmospheric Attenuation 206 -- References 207 -- 5 Principles of THz Direct Detection 212 /Elliott R. Brown, and Daniel Segovia-Vargas -- 5.1 Detection Mechanisms 212 -- 5.1.1 E-Field Rectification 213 -- 5.1.2 Thermal Detection 215 -- 5.1.3 Plasma-Wave, HEMT, and MOS-Based Detection 220 -- 5.2 Noise Mechanisms 223 -- 5.2.1 Noise from Electronic Devices 223 -- 5.2.2 Phonon Noise 225 -- 5.2.3 Photon Noise with Direct Detection 227 -- 5.3 THz Coupling 230 -- 5.3.1 THz Impedance Matching 230 -- 5.3.2 Planar-Antenna Coupling 231 -- 5.3.3 Exemplary THz Coupling Structures 232 -- 5.3.4 Output-Circuit Coupling 235 -- 5.4 External Responsivity Examples 235.
5.4.1 Rectifiers 235 -- 5.4.2 Micro-Bolometers 236 -- 5.5 System Metrics 239 -- 5.5.1 Signal-to-Noise Ratio 239 -- 5.5.2 Sensitivity Metrics 240 -- 5.6 Effect of Amplifier Noise 243 -- 5.7 A Survey of Experimental THz Detector Performance 244 -- 5.7.1 Rectifiers 246 -- 5.7.2 Thermal Detectors 247 -- 5.7.3 CMOS-Based and Plasma-Wave Detectors 249 -- References 250 -- 6 THz Electronics 254 /Michael Feiginov, Ramƒon Gonzalo, Itziar Maestrojuán, Oleg Cojocari, Matthias Hoefle, and Ernesto Limiti -- 6.1 Resonant-Tunneling Diodes 254 -- 6.1.1 Historic Introduction 254 -- 6.1.2 Operating Principles of RTDs 255 -- 6.1.3 Charge-Relaxation Processes in RTDs 256 -- 6.1.4 High-Frequency RTD Conductance 259 -- 6.1.5 Operating Principles of RTD Oscillators 260 -- 6.1.6 Limitations of RTD Oscillators 261 -- 6.1.7 Overview of the State of the Art Results 264 -- 6.1.8 RTD Oscillators versus Other Types of THz Sources 265 -- 6.1.9 Future Perspectives 265 -- 6.2 Schottky Diode Mixers: Fundamental and Harmonic Approaches 265 -- 6.2.1 Sub-Harmonic Mixers 267 -- 6.2.2 Circuit Fabrication Technologies 270 -- 6.2.3 Characterization Technologies 272 -- 6.2.4 Advanced Configuration Approach 276 -- 6.2.5 Imaging Applications of Schottky Mixers 277 -- 6.3 Solid-State THz Low Noise Amplifiers 278 -- 6.3.1 Solid-State Active Devices and Technologies for Low Noise Amplification 280 -- 6.3.2 Circuit and Propagation Issues for TMIC 282 -- 6.3.3 Low Noise Amplifier Design and Realizations 284 -- 6.3.4 Perspectives 287 -- 6.4 Square-Law Detectors 288 -- 6.4.1 Characterization and Modeling of Low-Barrier Schottky Diodes 289 -- 6.4.2 Design of Millimeter-Wave Square-Law Detectors 291 -- 6.5 Fabrication Technologies 292 -- 6.5.1 Overview of Fabrication Approaches of Schottky Structures for Millimeter-Wave Applications 293 -- 6.5.2 Film-Diode Process 296 -- References 299 -- 7 Selected Photonic THz Technologies 304 /Cyril C. Renaud, Andreas StŠohr, Thorsten Goebel, Frédéric Van Dijk, and Guillermo Carpintero.
7.1 Photonic Techniques for THz Emission and Detection 304 -- 7.1.1 Overall Photonic System 304 -- 7.1.2 Basic Components Description 306 -- 7.1.3 Systems Parameters, Pulsed versus CW 307 -- 7.2 Laser Sources for THz Generation 309 -- 7.2.1 Pulsed Laser Sources 309 -- 7.2.2 Continous Wave (CW) Sources 312 -- 7.2.3 Noise Reduction Techniques 314 -- 7.2.4 Photonic Integrated Laser Sources 315 -- 7.3 Photodiode for THz Emission 320 -- 7.3.1 PD Limitations and Key Parameters 320 -- 7.3.2 Traveling Wave UTC-PD Solution 322 -- 7.4 Photonically Enabled THz Detection 324 -- 7.4.1 Pulsed Terahertz Systems 325 -- 7.4.2 Optically Pumped Mixers 328 -- 7.5 Photonic Integration for THz Systems 331 -- 7.5.1 Hybrid or Monolithic Integrations 332 -- 7.5.2 Monolithic Integration of Subsystems 333 -- 7.5.3 Foundry Model for Integrated Systems 334 -- References 335 -- 8 Selected Emerging THz Technologies 340 /Christian Damm, Harald G. L. Schwefel, Florian Sedlmeir, Hans Hartnagel, Sascha Preu, and Christian Weickhmann -- 8.1 THz Resonators 340 -- 8.1.1 Principles of Resonators 341 -- 8.1.2 Introduction to WGM Resonators 343 -- 8.1.3 Evanescent Waveguide Coupling to WGMs 345 -- 8.1.4 Resonant Scattering in WGM Resonators 346 -- 8.1.5 Nonlinear Interactions in WGM 349 -- 8.2 Liquid Crystals 350 -- 8.2.1 Introduction 350 -- 8.2.2 Characterization 357 -- 8.2.3 Applications 365 -- 8.3 Graphene for THz Frequencies 367 -- 8.3.1 Theory and Material Properties 367 -- 8.3.2 Applications 373 -- References 377 -- Index 383.
Record Nr. UNINA-9910826172603321
Hoboken [New Jersey] : , : John Wiley & Sons, Inc., , 2015
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A simple antireflectiion overcoat for opaque coatings in the submillimeter region / / Sheldon M. Smith
A simple antireflectiion overcoat for opaque coatings in the submillimeter region / / Sheldon M. Smith
Autore Smith Sheldon M.
Pubbl/distr/stampa Moffett Field, California : , : National Aeronautics and Space Administration, Ames Research Center, , April 1986
Descrizione fisica 1 online resource (20 pages) : illustrations
Collana NASA technical memorandum
Soggetto topico Antireflection coatings
Optical reflection
Submillimeter waves
Teflon (trademark)
Refractivity
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Record Nr. UNINA-9910704236603321
Smith Sheldon M.  
Moffett Field, California : , : National Aeronautics and Space Administration, Ames Research Center, , April 1986
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The sixth International Kharkov Symposium on Physics and Engineering of Microwaves, Millimeter, and Submillimeter Waves and Workshop on Terahertz Technologies : symposium proceedings : Kharkov, Ukraine, June 21-26, 2004 : MSMW '07
The sixth International Kharkov Symposium on Physics and Engineering of Microwaves, Millimeter, and Submillimeter Waves and Workshop on Terahertz Technologies : symposium proceedings : Kharkov, Ukraine, June 21-26, 2004 : MSMW '07
Pubbl/distr/stampa [Place of publication not identified], : IEEE, 2007
Disciplina 621.381/3
Soggetto topico Millimeter waves - Receivers and reception
Millimeter wave devices
Submillimeter waves
Antennas (Electronics)
Radio
Electrical & Computer Engineering
Engineering & Applied Sciences
Electrical Engineering
ISBN 1-5090-8602-1
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Record Nr. UNISA-996201755603316
[Place of publication not identified], : IEEE, 2007
Materiale a stampa
Lo trovi qui: Univ. di Salerno
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The sixth International Kharkov Symposium on Physics and Engineering of Microwaves, Millimeter, and Submillimeter Waves and Workshop on Terahertz Technologies : symposium proceedings : Kharkov, Ukraine, June 21-26, 2004 : MSMW '07
The sixth International Kharkov Symposium on Physics and Engineering of Microwaves, Millimeter, and Submillimeter Waves and Workshop on Terahertz Technologies : symposium proceedings : Kharkov, Ukraine, June 21-26, 2004 : MSMW '07
Pubbl/distr/stampa [Place of publication not identified], : IEEE, 2007
Disciplina 621.381/3
Soggetto topico Millimeter waves - Receivers and reception
Millimeter wave devices
Submillimeter waves
Antennas (Electronics)
Radio
Electrical & Computer Engineering
Engineering & Applied Sciences
Electrical Engineering
ISBN 1-5090-8602-1
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Record Nr. UNINA-9910143010203321
[Place of publication not identified], : IEEE, 2007
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Terahertz antenna technology for imaging and sensing applications / / Ghanshyam Singh, Isha Malhotra
Terahertz antenna technology for imaging and sensing applications / / Ghanshyam Singh, Isha Malhotra
Autore Singh Ghanshyam
Edizione [1st edition 2021.]
Pubbl/distr/stampa Cham, Switzerland : , : Springer, , [2021]
Descrizione fisica 1 online resource (XXVI, 302 p. 84 illus., 71 illus. in color.)
Disciplina 621.3813
Soggetto topico Terahertz technology
Submillimeter waves
ISBN 3-030-68960-3
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto Introduction -- Terahertz Imaging Modality: State-of-the Art and Open challenges -- Terahertz Antenna Technology for Imaging and Sensing Application Devices -- Small-Gap Photoconductive Dipole Antenna for Imaging -- Analytical Framework of Small-Gap Photoconductive Dipole Antenna: Equivalent Circuit Model -- Directivity Enhancement of Terahertz photoconductive Antenna: Approach of frequency Selective Surface -- Highly-Directive Lens-Less Photoconductive Dipole Antenna Array for Imaging Applications -- Beam-Steering Characteristics of Highly-Directive Photoconductive Dipole Phase Array Antenna -- Terahertz Near-field Imaging and Sensing -- Aspects of Surface Plasmon Polaritons at Terahertz Frequencies -- Terahertz Integrated Devices and Systems for Imaging and Sensing.
Record Nr. UNINA-9910483103003321
Singh Ghanshyam  
Cham, Switzerland : , : Springer, , [2021]
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Terahertz physics / / R.A. Lewis [[electronic resource]]
Terahertz physics / / R.A. Lewis [[electronic resource]]
Autore Lewis R. A (Roger Adrian), <1957->
Pubbl/distr/stampa Cambridge : , : Cambridge University Press, , 2012
Descrizione fisica 1 online resource (xix, 275 pages) : digital, PDF file(s)
Disciplina 539.2
Soggetto topico Submillimeter waves
Electromagnetic waves
Physics
Terahertz spectroscopy
ISBN 1-316-08972-X
1-139-08819-X
1-139-78261-4
1-139-77962-1
1-139-77658-4
1-283-87075-4
1-139-77810-2
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto pt. 1. Basics -- pt. 2. Components -- pt. 3. Applications.
Record Nr. UNINA-9910453060003321
Lewis R. A (Roger Adrian), <1957->  
Cambridge : , : Cambridge University Press, , 2012
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Terahertz physics / / R.A. Lewis [[electronic resource]]
Terahertz physics / / R.A. Lewis [[electronic resource]]
Autore Lewis R. A (Roger Adrian), <1957->
Pubbl/distr/stampa Cambridge : , : Cambridge University Press, , 2012
Descrizione fisica 1 online resource (xix, 275 pages) : digital, PDF file(s)
Disciplina 539.2
Soggetto topico Submillimeter waves
Electromagnetic waves
Physics
Terahertz spectroscopy
ISBN 1-316-08972-X
1-139-08819-X
1-139-78261-4
1-139-77962-1
1-139-77658-4
1-283-87075-4
1-139-77810-2
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto pt. 1. Basics -- pt. 2. Components -- pt. 3. Applications.
Record Nr. UNINA-9910779440103321
Lewis R. A (Roger Adrian), <1957->  
Cambridge : , : Cambridge University Press, , 2012
Materiale a stampa
Lo trovi qui: Univ. Federico II
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Terahertz physics / / R.A. Lewis [[electronic resource]]
Terahertz physics / / R.A. Lewis [[electronic resource]]
Autore Lewis R. A (Roger Adrian), <1957->
Pubbl/distr/stampa Cambridge : , : Cambridge University Press, , 2012
Descrizione fisica 1 online resource (xix, 275 pages) : digital, PDF file(s)
Disciplina 539.2
Soggetto topico Submillimeter waves
Electromagnetic waves
Physics
Terahertz spectroscopy
ISBN 1-316-08972-X
1-139-08819-X
1-139-78261-4
1-139-77962-1
1-139-77658-4
1-283-87075-4
1-139-77810-2
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto pt. 1. Basics -- pt. 2. Components -- pt. 3. Applications.
Record Nr. UNINA-9910816195603321
Lewis R. A (Roger Adrian), <1957->  
Cambridge : , : Cambridge University Press, , 2012
Materiale a stampa
Lo trovi qui: Univ. Federico II
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Terahertz science and technology for military and security applications [[electronic resource] /] / editors, Dwight L. Woolard ... [et al.]
Terahertz science and technology for military and security applications [[electronic resource] /] / editors, Dwight L. Woolard ... [et al.]
Pubbl/distr/stampa Hackensack, NJ, : World Scientific, c2007
Descrizione fisica 1 online resource (261 p.)
Disciplina 681/.2
Altri autori (Persone) WoolardDwight L
Collana Selected topics in electronics and systems
Soggetto topico Detectors
Terahertz technology
Submillimeter waves
Soggetto genere / forma Electronic books.
ISBN 1-281-91181-X
9786611911812
981-277-180-8
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto CONTENTS; Foreword; Development of Computational Methodologies for the Prediction and Analysis of Solid-state Terahertz Spectra D. G. Allis and T. M. Korter; 1. Introduction; 2. Methods; 3. Results; 3.1. Adjustable Parameters in the DMof Code; 3.2. Intensity Calculations from Mulliken and Hirshfeld Charges; 3.3. A Review of the Functional Comparisons; 3.4. A Review of the Isolated-Molecule vs. Solid-Stute Normal Mode Frequencies; 3.5. Basis Set and Integration Grid Size Dependencies; 3.6. Analysis of the PHMX Calculations; 3.7. Analysis of the PETN I Calculations; 4. Discussion
4.1. Basis Set and Integration Grid Dependencies4.2. Mulliken and Hirsh feld Charge Dependencies; 4.3. Timings; 5. Conclusions; 6. Acknowledgments; References; Fire Damage on Carbon Fiber Materials Characterized by THz Waves N . Karpowicz, D. Dawes, M. J . Perry and X.-C. Zhang; 1. Introduction; 2. Experimental Setups; 3. Continuous-wave imaging; 4. THz Time-Domain Spectroscopy Measurements; 5. Conclusion; 6. Acknowledgements; References; An Analysis of the THz Frequency Signatures in the Cellular Components of Biological Agents A. Bykhovski, T. Globus, T. Khromova, B. Gelmont and D. Woolard
1. Introduction2. Theory; 2.1. Model description; 2.2. Simulation results; 3. Materials and methods; 4. Experimental results; 4.1. THz characterization of E-coli 's transfer RNA diluted solutions.; 5. Experiment v theory; 6. Acknowledgments; References; Standoff Sensing and Imaging of Explosive Related Chemical and Bio-Chemical Materials Using THz-TDS H. Zhong, A . Redo-Sanchez and X.-C. Zhang; 1. Introduction; 2. Principle; 2.1. Standoff sensing of RDX; 2.1.1. Signature of RDX at close proximity; 2.1.2. Sensing of RDXat standoffdistance
3. Spectroscopic focal-plane imaging of explosive materials at standoff distance3.1. Imaging results; 3.1.1. Optical and THz images; 3.1.2. Spectroscopic image; 3.1.3. Contrast of the image; 4. Conclusion; Acknowledgements; References; Fingerprinting Insulins in the Spectral Region from Mid-IR to THz R. Song, Y. J. Ding and Y. B. Zotova; 1. Introduction; 2. Sample Preparation and Experimental Setup; 3. Results and Discussions; 3.1. Absorption spectra in Mid-Infrared region; 3.2 Absorption spectrum in Fur-IWTHz transition region; 3.3 Absorption spectrum in THz region; 4. Conclusion
AcknowledgementReferences; Ambient Air Used as the Nonlinear Media for THz Wave Generation X . Xie, J . Dai, M. Yamaguchi and X.-C. Zhang; 1. Introduction; 2. Experimental setup; 3. Measurement and experimental results; 4. Theoretical discussion; 5. Conclusion; References; Time Domain Terahertz Imaging of Threats in Luggage and Personnel D. Zimdars, J. White, G. Stuk, G. Sucha, G. Fichter and S. L. Williamson; 1. Introduction; 2. High Speed Time Domain Terahegez Imaging Test Bed; 3. Terahertz Transmission Imaging of Luggage Objects
4 Car-Linear Terahertz Reflection Imaging of Luggage and Persowneii
Record Nr. UNINA-9910458547303321
Hackensack, NJ, : World Scientific, c2007
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui
Terahertz science and technology for military and security applications [[electronic resource] /] / editors, Dwight L. Woolard ... [et al.]
Terahertz science and technology for military and security applications [[electronic resource] /] / editors, Dwight L. Woolard ... [et al.]
Pubbl/distr/stampa Hackensack, NJ, : World Scientific, c2007
Descrizione fisica 1 online resource (261 p.)
Disciplina 681/.2
Altri autori (Persone) WoolardDwight L
Collana Selected topics in electronics and systems
Soggetto topico Detectors
Terahertz technology
Submillimeter waves
ISBN 1-281-91181-X
9786611911812
981-277-180-8
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto CONTENTS; Foreword; Development of Computational Methodologies for the Prediction and Analysis of Solid-state Terahertz Spectra D. G. Allis and T. M. Korter; 1. Introduction; 2. Methods; 3. Results; 3.1. Adjustable Parameters in the DMof Code; 3.2. Intensity Calculations from Mulliken and Hirshfeld Charges; 3.3. A Review of the Functional Comparisons; 3.4. A Review of the Isolated-Molecule vs. Solid-Stute Normal Mode Frequencies; 3.5. Basis Set and Integration Grid Size Dependencies; 3.6. Analysis of the PHMX Calculations; 3.7. Analysis of the PETN I Calculations; 4. Discussion
4.1. Basis Set and Integration Grid Dependencies4.2. Mulliken and Hirsh feld Charge Dependencies; 4.3. Timings; 5. Conclusions; 6. Acknowledgments; References; Fire Damage on Carbon Fiber Materials Characterized by THz Waves N . Karpowicz, D. Dawes, M. J . Perry and X.-C. Zhang; 1. Introduction; 2. Experimental Setups; 3. Continuous-wave imaging; 4. THz Time-Domain Spectroscopy Measurements; 5. Conclusion; 6. Acknowledgements; References; An Analysis of the THz Frequency Signatures in the Cellular Components of Biological Agents A. Bykhovski, T. Globus, T. Khromova, B. Gelmont and D. Woolard
1. Introduction2. Theory; 2.1. Model description; 2.2. Simulation results; 3. Materials and methods; 4. Experimental results; 4.1. THz characterization of E-coli 's transfer RNA diluted solutions.; 5. Experiment v theory; 6. Acknowledgments; References; Standoff Sensing and Imaging of Explosive Related Chemical and Bio-Chemical Materials Using THz-TDS H. Zhong, A . Redo-Sanchez and X.-C. Zhang; 1. Introduction; 2. Principle; 2.1. Standoff sensing of RDX; 2.1.1. Signature of RDX at close proximity; 2.1.2. Sensing of RDXat standoffdistance
3. Spectroscopic focal-plane imaging of explosive materials at standoff distance3.1. Imaging results; 3.1.1. Optical and THz images; 3.1.2. Spectroscopic image; 3.1.3. Contrast of the image; 4. Conclusion; Acknowledgements; References; Fingerprinting Insulins in the Spectral Region from Mid-IR to THz R. Song, Y. J. Ding and Y. B. Zotova; 1. Introduction; 2. Sample Preparation and Experimental Setup; 3. Results and Discussions; 3.1. Absorption spectra in Mid-Infrared region; 3.2 Absorption spectrum in Fur-IWTHz transition region; 3.3 Absorption spectrum in THz region; 4. Conclusion
AcknowledgementReferences; Ambient Air Used as the Nonlinear Media for THz Wave Generation X . Xie, J . Dai, M. Yamaguchi and X.-C. Zhang; 1. Introduction; 2. Experimental setup; 3. Measurement and experimental results; 4. Theoretical discussion; 5. Conclusion; References; Time Domain Terahertz Imaging of Threats in Luggage and Personnel D. Zimdars, J. White, G. Stuk, G. Sucha, G. Fichter and S. L. Williamson; 1. Introduction; 2. High Speed Time Domain Terahegez Imaging Test Bed; 3. Terahertz Transmission Imaging of Luggage Objects
4 Car-Linear Terahertz Reflection Imaging of Luggage and Persowneii
Record Nr. UNINA-9910784868103321
Hackensack, NJ, : World Scientific, c2007
Materiale a stampa
Lo trovi qui: Univ. Federico II
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