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Analysis and Design of Vertical Cavity Surface Emitting Lasers (Wiley Series in Lasers and Applications)
 
 
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Analysis and Design of Vertical Cavity Surface Emitting Lasers (Wiley Series in Lasers and Applications) [Hardcover]

S. F. Yu (Author)

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Book Description

September 4, 2003 0471391247 978-0471391241 1
A practical, hands-on guidebook for the efficient modeling of VCSELs
Vertical Cavity Surface Emitting Lasers (VCSELs) are a unique type of semiconductor laser whose optical output is vertically emitted from the surface as opposed to conventional edge-emitting semiconductor lasers. Complex in design and expensive to produce, VCSELs nevertheless represent an already widely used laser technology that promises to have even more significant applications in the future. Although the research has accelerated, there have been relatively few books written on this important topic.
Analysis and Design of Vertical Cavity Surface Emitting Lasers seeks to encapsulate this growing body of knowledge into a single, comprehensive reference that will be of equal value for both professionals and academics in the field. The author, a recognized expert in the field of VCSELs, attempts to clarify often conflicting assumptions in order to help readers achieve the simplest and most efficient VCSEL models for any given problem.
Highlights of the text include:
* A clear and comprehensive theoretical treatment of VCSELs
* Detailed derivations for understanding the operational principles of VCSELs
* Mathematical models for the investigation of electrical, optical, and thermal properties of VCSELs
* Case studies on the mathematical modeling of VCSELs and the implementation of simulation programs

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Editorial Reviews

Review

"…very nicely organized…design engineers of VCSELs will find this book the most useful. However, it also provides valuable information to CAD tool designers…" (Optics & Photonics News, June 2005)

“…the author’s assessment of the opportunities gives a strong incentive to develop such interest” (Robotica, Vol. 22, 2004)

From the Back Cover

A practical, hands-on guidebook for the efficient modeling of VCSELs

Vertical Cavity Surface Emitting Lasers (VCSELs) are a unique type of semiconductor laser whose optical output is vertically emitted from the surface as opposed to conventional edge-emitting semiconductor lasers. Complex in design and expensive to produce, VCSELs nevertheless represent an already widely used laser technology that promises to have even more significant applications in the future. Although the research has accelerated, there have been relatively few books written on this important topic.

Analysis and Design of Vertical Cavity Surface Emitting Lasers seeks to encapsulate this growing body of knowledge into a single, comprehensive reference that will be of equal value for both professionals and academics in the field. The author, a recognized expert in the field of VCSELs, attempts to clarify often conflicting assumptions in order to help readers achieve the simplest and most efficient VCSEL models for any given problem.

Highlights of the text include:

  • A clear and comprehensive theoretical treatment of VCSELs
  • Detailed derivations for understanding the operational principles of VCSELs
  • Mathematical models for the investigation of electrical, optical, and thermal properties of VCSELs
  • Case studies on the mathematical modeling of VCSELs and the implementation of simulation programs

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Inside This Book (learn more)
First Sentence:
This chapter reviews the most recent developments in vertical cavity surface emitting lasers (VCSELs) operating from infrared to ultraviolet. Read the first page
Key Phrases - Statistically Improbable Phrases (SIPs): (learn more)
injection carrier concentration, polarization bistability, antiguided structure, gain anisotropy, orthogonal polarized modes, current confinement structure, effective gain difference, multilayered mirror, appropriated boundary conditions, nonlasing peak, fiber computer networks, periodic gain structure, relative confinement factor, total internal loss, dielectric cylindrical waveguide, normalized cavity length, wallplug efficiency, simple rate equation model, pie array, anisotropic gain, intracavity absorber, longitudinal confinement factor, optical confinement structure, optical field vector, dielectric multilayered
Key Phrases - Capitalized Phrases (CAPs): (learn more)
Quantum Electron, New York, John Wiley, Lightwave Technol, Academic Press, Luttinger-Kohn Hamiltonian, Cambridge Univ, Long Wavelength Semiconductor Lasers, Van Nostrand Reinhold, Cielo Communications, Numerical Recipes, Stability Analysis of Polarizations, Von Lehmen
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