The book presents the basics of THz-TDS, including latest and interesting research on THz domain. It overviews the main classical far-infrared techniques and describes a variety of THz-TDS setups. It provides a comprehensive overview of the extraction procedures that are used to calculate the permittivity.
The book presents the basics of THz-TDS, including latest and interesting research on THz domain. It overviews the main classical far-infrared techniques and describes a variety of THz-TDS setups. It provides a comprehensive overview of the extraction procedures that are used to calculate the permittivity.Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
Jean-Louis Coutaz is a professor of physics at Université Savoie Mont Blanc, Chambéry, France, and is the deputy director of L'Institut de Microélectronique Electromagnétisme et Photonique et le Laboratoire d'Hyperfréquences et de Caractérisation (IMEP-LaHC), where he has been leading research activities in terahertz time-domain spectroscopy (THz-TDS), electro-optic sampling, and ultrafast semiconductors since 1994. Frédéric Garet is an associate professor of optoelectronics at IMEP-LaHC. He defended his PhD in 1997 on THz-TDS, and since then, his research focuses on the precise characterization of materials and devices using THz-TDS and on developing methods for identification and authentication in the THz domain. Vincent Wallace is an associate professor of physics at the University of Western Australia, Perth, Australia. He graduated with a PhD in physics from the University of London in 1997. After three years at the Beckman Laser Institute and Medical Clinic, University of California Irvine, he joined Toshiba Research Europe Ltd. and subsequently TeraView Ltd., Cambridge, UK, where he developed biomedical applications of terahertz technology. In 2007, he moved to the University of Western Australia where he continues to work on terahertz and optical technologies.
Inhaltsangabe
Introduction. The THz Frequency Range. Classical Far Infrared Spectroscopy Techniques. THz TDS Instrumentation. Extracting the Refractive Index from Transmission TDS Data. Extracting the Refractive Index from Reflection TDS Data. Pump and Probe THz TDS. Waveguides, Metamaterials and Plasmonic Devices. Characterization of Anisotropic Materials. THz TDS of Scattering Samples. Noise in THz TDS Systems. Precision of the THz TDS Extraction. Advanced Techniques.
Introduction. The THz Frequency Range. Classical Far Infrared Spectroscopy Techniques. THz TDS Instrumentation. Extracting the Refractive Index from Transmission TDS Data. Extracting the Refractive Index from Reflection TDS Data. Pump and Probe THz TDS. Waveguides, Metamaterials and Plasmonic Devices. Characterization of Anisotropic Materials. THz TDS of Scattering Samples. Noise in THz TDS Systems. Precision of the THz TDS Extraction. Advanced Techniques.
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