PDF Ebook Photonic Crystals: Molding the Flow of Light - Second Edition

PDF Ebook Photonic Crystals: Molding the Flow of Light - Second Edition

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Photonic Crystals: Molding the Flow of Light - Second Edition

Photonic Crystals: Molding the Flow of Light - Second Edition


Photonic Crystals: Molding the Flow of Light - Second Edition


PDF Ebook Photonic Crystals: Molding the Flow of Light - Second Edition

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Photonic Crystals: Molding the Flow of Light - Second Edition

Review

"Photonic Crystals is a timely and well-written account of this new field." (Nature)"This book offers elegant full-color illustrations and is superbly produced. This has to be applauded in an era dominated by low-resolution digital images. In summary: Photonics Crystals is a beauty and is highly recommended to photonics, laser, and optical scientist." (Optics Journal)"This text is certainly pitched at a post third-year quantum mechanics, electromagnetism and solid-state physics level in the Australian context and is ideally suited to study at an Honours or a Masters level. [Images freely available from MIT complement this text]. Certainly for all who offer photonics courses, this book should be in your institution's library if not on your shelf."---John Holdsworth, Australian Physics"This book is destined to become the classic textbook in the area. It gathers together the fundamental concepts and tools relevant to photonic crystals and presents them with exceptional clarity. I genuinely enjoyed reading it."--Maryanne Large, University of Sydney"An excellent textbook to be used in physics, chemistry, and engineering. The revised edition of Photonic Crystals fills the gap between the layperson and the expert reader."--Costas M. Soukoulis, Iowa State University

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From the Inside Flap

"This book is destined to become the classic textbook in the area. It gathers together the fundamental concepts and tools relevant to photonic crystals and presents them with exceptional clarity. I genuinely enjoyed reading it."--Maryanne Large, University of Sydney"An excellent textbook to be used in physics, chemistry, and engineering. The revised edition ofPhotonic Crystals fills the gap between the layperson and the expert reader."--Costas M. Soukoulis, Iowa State University

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See all Editorial Reviews

Product details

Hardcover: 304 pages

Publisher: Princeton University Press; 2 edition (March 2, 2008)

Language: English

ISBN-10: 0691124566

ISBN-13: 978-0691124568

Product Dimensions:

7.2 x 1 x 10.2 inches

Shipping Weight: 2.4 pounds (View shipping rates and policies)

Average Customer Review:

4.4 out of 5 stars

14 customer reviews

Amazon Best Sellers Rank:

#1,131,589 in Books (See Top 100 in Books)

As a co-author of the new edition, I'm obviously a bit biased, but I think this book occupies a unique position in this field as a broad advanced-undergraduate/beginning-graduate introduction to photonic crystals and light in periodic media, focusing on timeless fundamentals and richly illustrated with examples of many different structures. Compared to the first edition, it is greatly expanded and improved, with almost every chapter seeing significant revisions and several entirely new chapters; the second edition is roughly double the length of the first.However, the main reason I am posting here is that you don't need to take my word for it; the publishers have allowed us to post a PDF of the entire book online for no cost, so you can determine whether it is useful to you before purchasing the paper version (beautifully printed in full color). See ab-initio.mit.edu/book (where you can also find errata etcetera).Compared to classic textbooks like Hecht or Jackson, this book occupies a somewhat different ground. It is not concerned with geometric optics (where the wavelength is small compared to the structure) or with the handful of geometries that can be solved almost completely analytically (vacuum, planes, cylinders, and spheres). Rather, it deals with the vast array of problems in nanophotonics where the wavelength is comparable to the structure, and especially with periodic (or partially periodic) "crystalline" structures. In these cases, although completely analytical solutions are usually impossible, the book explains how there are more general principles such as symmetry and linear algebra that reveal the fundamental structure and behavior of light in such media. The book uses these principles to explain the most important optical properties of these structures, from confinement of light in 3d band gaps to periodic dielectric waveguides and optical fibers. It also introduces the powerful tool of temporal coupled-mode theory to design devices by coupling waveguides and microcavities.

This visually attractive book is also very informative, particularly for someone with a background in solid-state physics and eletromagnetism. The reformulation of Maxwell's equations as a Hamiltonian theory was a very interesting insight for someone (me, OK?) with a traditional physics graduate school education. Another interesting insight is that scalar diffraction theory works when polarization effects are unimportant, and polarization effects are unimportant when the periodicity is large compared to the wavelength of light. A third is the development of the eigenvalue as the mode-weighted average over the bulk indices of refraction of the materials composing the structure.The mathematical development is just perfect to get the main ideas across without burying the reader. There are entrees into the literature for more advanced developments.

The authors give great physical explanations with just the right amount of mathematical rigor. The analogy with quantum mechanics is made continuously through the text which helps with intuition. This book is definitely going to be a classic.

Great easy to read, conceptually covers relevant main and background material, very colorful supporting pictures and plots, written by experts in this field.

First, a disclaimer: I am a graduate student working within the research group of two of the authors (JDJ & SGJ). I used the first edition of this book (as did many other researchers) extensively when being first introduced to this field and have been able to compare it with this most recent edition given my familiarity with both editions. The 2nd edition is a significant improvement over the 1st edition, for many reasons: 1) the content is further polished and well presented (owing in part to the emphasis on clarity in communication placed within our group), 2) the figures, equations, and fonts are much more readable than before and 3) there are at least three new chapters that provide timely information on emerging subfields (periodic dielectric waveguides, photonic crystal slabs and photonic crystal fibers). An extensive (and expanded) bibliography and appendix (with an extra section on computational photonics) supplement the main text well. The book is at least twice as thick as the 1st edition with new and updated content and is exquisitely bound & illustrated. Indeed, it is true that a free copy of this book has been posted on the authors' website, but owning a hard copy is a valuable reference as well. The 2nd edition is not simply a superficial revision of the 1st, it is a much needed improvement for a field that has seen a tremendous amount of growth in the intervening years of the books' first publication.

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Photonic Crystals: Molding the Flow of Light - Second Edition PDF
Photonic Crystals: Molding the Flow of Light - Second Edition PDF

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