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Integrated Photonics

Autor Clifford Pollock, Michal Lipson
en Limba Engleză Paperback – 5 noi 2010
From the beginning Integrated Photonics introduces numerical techniques for studying non-analytic structures. Most chapters have numerical problems designed for solution using a computational program such as Matlab or Mathematica. An entire chapter is devoted to one of the numeric simulation techniques being used in optoelectronic design (the Beam Propagation Method), and provides opportunity for students to explore some novel optical structures without too much effort. Small pieces of code are supplied where appropriate to get the reader started on the numeric work.
Integrated Photonics is designed for the senior/first year graduate student, and requires a basic familiarity with electromagnetic waves, and the ability to solve differential equations with boundary conditions.
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Specificații

ISBN-13: 9781441953988
ISBN-10: 1441953981
Pagini: 392
Ilustrații: XII, 376 p. 100 illus.
Dimensiuni: 155 x 235 x 21 mm
Greutate: 0.6 kg
Ediția:Softcover reprint of hardcover 1st ed. 2004
Editura: Springer Us
Colecția Springer
Locul publicării:New York, NY, United States

Public țintă

Research

Descriere

This book covers four major topics of integrated photonics: 1) fundamental principles of electromagnetic theory; 2) waveguides; 3) simulation of waveguide modes, and 4) photonic structures. The first part of the text explores the basis for optical propagation and establishes the use of the MKS system, discussing the wave equation and the properties of materials such as attenuation and dispersion. The next section explores the operation of optical waveguides. We start with planar slab waveguides, then systematically advance to more complicated structures, such as graded index waveguides, circular waveguides, and rectangular waveguides. The details of coupling light between and within waveguide modes is clearly described, and applied to the examination of photonic bandgap crystals and optical devices such as arrayed waveguides. The final section of the text discusses optoelectronic devices such as modulators and switches. These topics are very active areas of research today, and are likely to increase in significance as they mature.
From the beginning Integrated Photonics introduces numerical techniques for studying non-analytic structures. Most chapters have numerical problems designed for solution using a computational program such as Matlab or Mathematica. An entire chapter is devoted to one of the numeric simulation techniques being used in optoelectronic design (the Beam Propagation Method), and provides opportunity for students to explore some novel optical structures without too much effort. Small pieces of code are supplied where appropriate to get the reader started on the numeric work.
Integrated Photonics is designed for the senior/first year graduate student, and requires a basic familiarity with electromagnetic waves, and the ability to solve differential equations with boundary conditions.

Cuprins

1. Introduction and Overview.- 2. Maxwell’s Equations.- 3. The Planar Slab Waveguide.- 4. Step-Index Circular Waveguides.- 5. Rectangular Dielectric Waveguides.- 6. Dispersion in Waveguides.- 7. Graded Index Waveguides.- 8. Attenuation and Nonlinear Effects.- 9. Numerical Methods.- 10. Coupled Mode Theory.- 11. Coupling between Sources and Waveguides.- 12. Waveguide Modulators.- 13. Photonic Crystals.- 14. Integrated Resonators and Filters.- Appendices.- The Goos-Hänchen Shift.- References.- Bessel Functions.- 1 Bessel Functions of the First Kind.- 2 Modified Bessel Functions.- 3 Asymptotic Expansions.- Optical Power Limit of a Waveguide due to Stimulated Raman Scattering.- References.- Useful Data.

Caracteristici

Covers four major topics of integrated photonics: 1) fundamental principles of electromagnetic theory; 2) waveguides; 3) simulation of waveguide modes, and 4) photonic structures