The Physics of Thin Film Optical Spectra: An Introduction (Springer Series in Surface Sciences Book 44)
معرفی کتاب «The Physics of Thin Film Optical Spectra: An Introduction (Springer Series in Surface Sciences Book 44)» نوشتهٔ Dr. habil. Olaf Stenzel (auth.)، منتشرشده توسط نشر Springer-Verlag Berlin Heidelberg در سال 2005. این کتاب در 47 صفحه، فرمت pdf، زبان انگلیسی ارائه شده است.
"The book is intended to bridge the gap between fundamental physics courses (such as optics, electrodynamics, quantum mechanics and solid state physics) and highly specialized literature on the spectroscopy, design, and application of optical thin film coatings. Basic knowledge from the above-mentioned courses is therefore presumed. Starting from fundamental physics, the book enables the reader to derive the theory of optical coatings and to apply it to practically important spectroscopic problems. Both classical and semiclassical approaches are included. Examples describe the full range of classical optical coatings in various spectral regions as well as highly specialized new topics such as rugate filters and resonant grating waveguide structures."--Résumé de l'éditeur The present monograph represents itself as a tutorial to the ?eld of optical properties of thin solid ?lms. It is neither a handbook for the thin ?lm prac- tioner,noranintroductiontointerferencecoatingsdesign,norareviewonthe latest developments in the ?eld. Instead, it is a textbook which shall bridge the gap between ground level knowledge on optics, electrodynamics, qu- tummechanics,andsolidstatephysicsononehand,andthemorespecialized level of knowledge presumed in typical thin ?lm optical research papers on the other hand. In writing this preface, I feel it makes sense to comment on three points, which all seem to me equally important. They arise from the following (- tually interconnected) three questions: 1. Who can bene?t from reading this book? 2. What is the origin of the particular material selection in this book? 3. Who encouraged and supported me in writing this book? Let me start with the ?rst question, the intended readership of this book. It should be of use for anybody, who is involved into the analysis of - tical spectra of a thin ?lm sample, no matter whether the sample has been prepared for optical or other applications. Thin ?lm spectroscopy may be r- evant in semiconductor physics, solar cell development, physical chemistry, optoelectronics, and optical coatings development, to give just a few ex- ples. The book supplies the reader with the necessary theoretical apparatus for understanding and modelling the features of the recorded transmission and re?ection spectra. "The book is intended to bridge the gap between fundamental physics courses (such as optics, electrodynamics, quantum mechanics and solid state physics) and highly specialized literature on the spectroscopy, design, and application of optical thin film coatings. Basic knowledge from the above-mentioned courses is therefore presumed. Starting from fundamental physics, the book enables the reader to derive the theory of optical coatings and to apply it to practically important spectroscopic problems. Both classical and semiclassical approaches are included. Examples describe the full range of classical optical coatings in various spectral regions as well as highly specialized new topics such as rugate filters and resonant grating waveguide structures."--Résumé de l'éditeur "The book is intended to bridge the gap between fundamental physics courses (such as optics, electrodynamics, quantum mechanics and solid state physics) and highly specialized literature on the spectroscopy, design, and application of optical thin film coatings. Basic knowledge from the above-mentioned courses is therefore presumed. Starting from fundamental physics, the book enables the reader to derive the theory of optical coatings and to apply it to practically important spectroscopic problems. Both classical and semiclassical approaches are included. Examples describe the full range of classical optical coatings in various spectral regions as well as highly specialized new topics such as rugate filters and resonant grating waveguide structures."--BOOK JACKET Introduction....Pages 1-6 The Linear Dielectric Susceptibility General....Pages 9-19 The Classical Treatment of Free and Bound Charge Carriers....Pages 21-35 Derivations from the Oscillator Model....Pages 37-60 The Kramers-Kronig Relations....Pages 61-68 Planar Interfaces....Pages 71-100 Thick Slabs and Thin Films....Pages 101-124 Extended Details: Gradient Index Films and Multilayers....Pages 125-140 9 Special Geometries....Pages 141-160 Einstein Coefficients....Pages 163-186 Semiclassical Treatment of the Dielectric Function....Pages 187-198 Solid State Optics....Pages 199-228 Some Basic Effects of Nonlinear Optics....Pages 231-254 Summary....Pages 255-259 Whenever one is involved in spectroscopic experiments with electromagnetic waves, knowledge of the interaction of electromagnetic irradiation with matter is fundamental to the theoretical understanding of the experimental results.
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