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Presentation slides from the Plenary track at the ETCMOS 2016 conference in Montreal, May 25-27, 2016
Presentation slides from the Devices, Circuits and Systems track at the ETCMOS 2016 conference in Montreal, May 25-27, 2016
Presentation slides from the Flexible Electronics and Materials track at the ETCMOS 2016 conference in Montreal, May 25-27, 2016
Presentation slides from the Energy and Wireless track at the ETCMOS 2016 conference in Montreal, May 25-27, 2016
Presentation slides from the Plenary track at the ETCMOS 2016 conference in Montreal, May 25-27, 2016
Presentation slides from the Nantoechnology track at the ETCMOS 2016 conference in Montreal, May 25-27, 2016
Presentation slides from the Optics and Photonics track at the ETCMOS 2016 conference in Montreal, May 25-27, 2016
Polarized Light and Optical Systems presents polarization optics for undergraduate and graduate students in a way which makes classroom teaching relevant to current issues in optical engineering. This curriculum has been developed and refined for a decade and a half at the University of Arizona’s College of Optical Sciences. Polarized Light and Optical Systems provides a reference for the optical engineer and optical designer in issues related to building polarimeters, designing displays, and polarization critical optical systems. The central theme of Polarized Light and Optical Systems is a unifying treatment of polarization elements as optical elements and optical elements as polarization elements. Key Features Comprehensive presentation of Jones calculus and Mueller calculus with tables and derivations of the Jones and Mueller matrices for polarization elements and polarization effects Classroom-appropriate presentations of polarization of birefringent materials, thin films, stress birefringence, crystal polarizers, liquid crystals, and gratings Discussion of the many forms of polarimeters, their trade-offs, data reduction methods, and polarization artifacts Exposition of the polarization ray tracing calculus to integrate polarization with ray tracing Explanation of the sources of polarization aberrations in optical systems and the functional forms of these polarization aberrations Problem sets to build students’ problem-solving capabilities.
This book covers the theoretical background, experimental methods and implementation details to engineer for communication and imaging application, terahertz devices using metamaterials, in mainstream semiconductor foundry processes. This book will provide engineers and physicists an authoritative reference to construct such devices with minimal background. The authors describe the design and construction of electromagnetic (EM) devices for terahertz frequencies (108-1010 cycles/sec) using artificial materials that are a fraction of the wavelength of the incident EM wave, resulting in an effective electric and magnetic properties (permittivity and permeability) that are unavailable in natural materials.
"Formerly known as the International Citation Manual"--p. xv.