MOCVD Challenge

MOCVD Challenge

AngličtinaMěkká vazbaTisk na objednávku
Razeghi Manijeh
Taylor & Francis Ltd
EAN: 9781138114937
Tisk na objednávku
Předpokládané dodání v pondělí, 13. ledna 2025
2 102 Kč
Běžná cena: 2 336 Kč
Sleva 10 %
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Podrobné informace

Written by one of the driving forces in the field, The MOCVD Challenge is a comprehensive review covering GaInAsP–InP, GaInAsP–GaAs, and related material for electronic and photonic device applications. These III-V semiconductor compounds have been used to realize the electronic, optoelectronic, and quantum devices that have revolutionized telecommunications. The figure on the back cover gives the energy gap and lattice parameter for the entire compositional range of the binary, ternary, and quaternary combinations of these III-V elements. By understanding the material and learning to control the growth new devices become possible: the front cover shows the world’s first InP/GaInAs superlattice that was fabricated by the author — this has gone on to be the basis of modern quantum devices like quantum cascade lasers and quantum dot infrared photodetectors.

Now in its second edition, this updated and combined volume contains the secrets of MOCVD growth, material optimization, and modern device technology. It begins with an introduction to semiconductor compounds and the MOCVD growth process. It then discusses in situ and ex situ characterization for MOCVD growth. Next, the book examines in detail the specifics of the growth of GaInP(As)-GaAs and GaInAs(P)-InP material systems. It examines MOCVD growth of various III-V heterojunctions and superlattices and discusses electronic and optoelectronic devices realized with this material. Spanning 30 years of research, the book is the definitive resource on MOCVD.

EAN 9781138114937
ISBN 1138114936
Typ produktu Měkká vazba
Vydavatel Taylor & Francis Ltd
Datum vydání 14. června 2017
Stránky 800
Jazyk English
Rozměry 234 x 156
Země United Kingdom
Sekce Tertiary Education
Autoři Razeghi Manijeh
Ilustrace 87 Tables, black and white; 579 Illustrations, black and white
Edice 2 ed
Série Electronic Materials and Devices Series