Fr. 80.00

Handbook of Optoelectronic Device Modeling and Simulation - Lasers, Modulators, Photodetectors, Solar Cells, Numerical Methods,

Anglais · Livre de poche

Expédition généralement dans un délai de 1 à 3 semaines (ne peut pas être livré de suite)

Description

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Optoelectronic devices utilize semiconductor structures that enable the interaction and propagation of electrons and photons, and are the foundation of a huge range of devices. This handbook provides an overview of modeling and simulation for optoelectronic device design, analysis, and performance optimization.

Table des matières

PART VI Laser Diodes

26 Laser Diode Fundamentals

Joachim Piprek

27 High-Power Lasers

Hans Wenzel and Anissa Zeghuzi

28 High-Brightness Tapered Lasers

Ignacio Esquivias, Antonio Pérez-Serrano, and José-Manuel G. Tijero

29 High-Brightness Laser Diodes with External Feedback

Mohamad Anas Helal, Simeon N. Kaunga-Nyirenda, Steve Bull, and Eric Larkins

30 Single Longitudinal Mode Laser Diodes

Xun Li

31 Traveling Wave Modeling of Nonlinear Dynamics in Multisection Laser Diodes

Mindaugas Radziunas

32 Mode-Locked Semiconductor Lasers

Eugene Avrutin and Julien Javaloyes

33 Quantum Cascade Lasers: Electrothermal Simulation

Song Mei, Yanbing Shi, Olafur Jonasson, and Irena Knezevic

34 Vertical-Cavity Surface-Emitting Lasers

Tomasz Czyszanowski, Leszek Frasunkiewicz, and Maciej Dems
PART VII Photodetectors and Modulators

35 Photodetector Fundamentals

Prasanta Basu

36 P-N Junction Photodiodes

Weida Hu

37 Quantum Well Infrared Photodetectors

Kwong-Kit Choi

38 Optical Modulators

Dominic F.G. Gallagher and Dmitry Labukhin
PART VIII Solar Cells

39 Solar Cell Fundamentals

Matthias Müller

40 Multijunction Solar Cells

Matthew Wilkins and Karin Hinzer

41 Nanostructure Solar Cells

Urs Aeberhard

42 Nanowire Solar Cells: Electro-Optical Performance

Bernd Witzigmann

43 Thin-Film Solar Cells

Matthias Auf der Maur, Tim Albes, and Alessio Gagliardi
PART IX Novel Applications

44 Electroluminescent Refrigerators

Kuan-Chen Lee and Shun-Tung Yen

45 Photonic Crystal Laser Diodes

Maciej Dems

46 Single-Photon Sources

Niels Gregersen, Dara P. S. McCutcheon, and Jesper Mørk

47 Nanoplasmonic Lasers and Spasers

A. Freddie Page and Ortwin Hess

48 Quantum-Dot Nanolasers

Christopher Gies, Michael Lorke, Frank Jahnke, and Weng W. Chow

49 Nonlinear Dynamics in Quantum Photonic Structures

Gabriela Slavcheva and Mirella Koleva
PART X Mathematical Methods

50 Drift-Diffusion Models

Patricio Farrell, Nella Rotundo, Duy Hai Doan, Markus Kantner, Jürgen Fuhrmann, and Thomas Koprucki

51 Monte Carlo Device Simulations

Katerina Raleva, Abdul R. Shaik, Raghuraj Hathwar, Akash Laturia, Suleman S. Qazi, Robin Daugherty, Dragica Vasileska, and Stephen M. Goodnick

52 Photonics

Frank Schmidt

A propos de l'auteur

Hear from Dr. Piprek at this Q&A session: https://www.crcpress.com/go/editor_qa_session_joachim_piprek

Joachim Piprek received his Ph.D. degree in theoretical physics from Humboldt University in Berlin, Germany, in 1986. For more than two decades, he worked in industry and academia on modeling, simulation, and analysis of various optoelectronic devices. Dr. Piprek has taught graduate courses at universities in Germany, Sweden, and in the United States. He was invited guest editor for several journal issues on optoelectronic device simulation and currently serves as an executive editor of Optical and Quantum Electronics as well as an associate editor for the Journal of Computational Electronics. Dr. Piprek is founder and co-chair of the annual conference on Numerical Simulation of Optoelectronic Devices and he has also (co-)chaired several SPIE conferences. He has published 3 books, 6 book chapters, 4 patents, and more than 200 research papers.

Résumé

Optoelectronic devices utilize semiconductor structures that enable the interaction and propagation of electrons and photons, and are the foundation of a huge range of devices. This handbook provides an overview of modeling and simulation for optoelectronic device design, analysis, and performance optimization.

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