Optoelectronic Devices: III Nitrides

Author:   Mohamed Henini (The University of Nottingham, School of Physics and Astronomy, UK) ,  M Razeghi (Director, Center for Quantum Devices,<br>Department of Electrical and Computer Engineering, Northwestern University, USA)
Publisher:   Elsevier Science & Technology
ISBN:  

9780080444260


Pages:   592
Publication Date:   17 December 2004
Format:   Hardback
Availability:   Out of stock   Availability explained
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Optoelectronic Devices: III Nitrides


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Overview

Tremendous progress has been made in the last few years in the growth, doping and processing technologies of the wide bandgap semiconductors. As a result, this class of materials now holds significant promis for semiconductor electronics in a broad range of applications. The principal driver for the current revival of interest in III-V Nitrides is their potential use in high power, high temperature, high frequency and optical devices resistant to radiation damage. This book provides a wide number of optoelectronic applications of III-V nitrides and covers the entire process from growth to devices and applications making it essential reading for those working in the semiconductors or microelectronics.

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Author:   Mohamed Henini (The University of Nottingham, School of Physics and Astronomy, UK) ,  M Razeghi (Director, Center for Quantum Devices,<br>Department of Electrical and Computer Engineering, Northwestern University, USA)
Publisher:   Elsevier Science & Technology
Imprint:   Elsevier Science Ltd
Dimensions:   Width: 16.50cm , Height: 2.80cm , Length: 24.00cm
Weight:   1.210kg
ISBN:  

9780080444260


ISBN 10:   0080444261
Pages:   592
Publication Date:   17 December 2004
Audience:   Professional and scholarly ,  Professional & Vocational
Format:   Hardback
Publisher's Status:   Active
Availability:   Out of stock   Availability explained
The supplier is temporarily out of stock of this item. It will be ordered for you on backorder and shipped when it becomes available.

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Dr M. Henini has over 20 years’ experience of Molecular Beam Epitaxy (MBE) growth and has published >700 papers. He has particular interests in the MBE growth and physics of self-assembled quantum dots using electronic, optical and structural techniques. Leaders in the field of self-organisation of nanostructures will give an account on the formation, properties, and self-organization of semiconductor nanostructures.

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