"Version: 202112"--Title page verso.Includes bibliographical references.1. Introduction -- 1.1. General introduction -- 1.2. Materials classification on the basis of symmetry -- 1.3. The basics of ferroelectricity and related phenomenon -- 1.4. Classification of ferroelectrics -- 1.5. Aurivillius oxides2. Odd number layered Aurivillius oxides -- 2.1. Single-layered oxides (m = 1) Bi2MoO6 and Bi…
"Version: 202112"--Title page verso.Includes bibliographical references.1. Introduction to RPoF techniques -- 1.1. Introductory remarks -- 1.2. 5G and 6G frequency bands and spectrum allocations -- 1.3. RPoF and transfer functions -- 1.4. RPoF transmission techniques -- 1.5. EM field sensing -- 1.6. Distortion effects in RPoF -- 1.7. Optical transport guided media -- 1.8. Modulation formats and…
"Version: 202109"--Title page verso.Includes bibliographical references.1. Optics, sensors and images -- 1.1. Introduction -- 1.2. Optics and images -- 1.3. Vision -- 1.4. Optical instruments and optical design -- 1.5. Cameras -- 1.6. CCD sensor -- 1.7. CMOS sensor -- 1.8. Python as a program language for this book -- 1.9. Artificial vision and computer vision -- 1.10. End notes2. Introduction …
"Version: 20220401"--Title page verso.Includes bibliographical references.1. Introduction -- 1.1. Light -- 1.2. Detectors -- 1.3. Benefits of using an imaging system2. Lasers -- 2.1. Light emission, absorption and matter interactions -- 2.2. Properties of lasers and laser light -- 2.3. Laser safety -- 2.4. Additional resources3. Silicon-based imaging systems -- 3.1. Vision -- 3.2. Detectors -- …
"Version: 20220901"--Title page verso.Includes bibliographical references.1. History of our laser experiments -- 1.1. Laser isotope separation laboratory -- 1.2. Laser and optics laboratory -- 1.3. Teaching laboratory : Experimental Physics V -- 1.4. Advanced laboratory -- 1.5. Summary2. Saturated absorption spectroscopy -- 2.1. Description of saturated absorption spectroscopy -- 2.2. Multi-lev…
"Version: 202111"--Title page verso.Includes bibliographical references.1. Introduction -- 2. Exact solutions of the basic equations -- 2.1. Initial hypotheses -- 2.2. Solution of the classical equation of electron motion -- 2.3. Solution of the Klein-Gordon equation -- 2.4. Solution of the Dirac equation3. Modelling ultra-relativistic interactions in electron plasmas -- 3.1. Initial hypotheses…
"Version: 202203"--Title page verso.Includes bibliographical references and index.1. Nanomanipulation : why optical methods are best -- 1.1. Non-contact forces -- 1.2. Issues of scale2. Key properties of the radiation -- 2.1. Energy, linear momentum and angular momentum of light -- 2.2. Light inside a medium -- 2.3. Matter and its interaction with light3. Optically induced mechanical forces -- …
"Version: 20220601"--Title page verso.Includes bibliographical references.part I. Introduction to optical path theory. 1. The path of light -- 1.1. Purpose and introduction to this treatise -- 1.2. The optical path and Fermat's principle -- 1.3. The law of reflection -- 1.4. The law of refraction -- 1.5. The vector form of Snell's law -- 1.6. The wavefront and the Malus-Dupin theorem -- 1.7. Op…
"Version: 20220801"--Title page verso.Includes bibliographical references.part I. Basics of photonics and lasers. 1. The photon and photonics -- 1.1. The photon -- 1.2. Branches of photonics -- 1.3. Maxwell's equations and their connection to optics -- 1.4. A few topics related to lasers and optics -- 1.5. Comparison of an electronic circuit and a photonic circuit -- 1.6. Nobel prizes related t…
"Version: 20200901"--Title page verso.Includes bibliographical references.1. The Maxwell equations -- 1.1. Introduction -- 1.2. Lorentz force -- 1.3. Electric flux -- 1.4. The Gauss law -- 1.5. The Gauss law for magnetism -- 1.6. Faraday's law -- 1.7. Amp?ere's law -- 1.8. The wave equation -- 1.9. The speed and propagation of light -- 1.10. Refraction index -- 1.11. Electromagnetic waves -- 1.…